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Schoenstein & Co.,
Benicia, California
Schermerhorn Symphony Center,

Nashville, Tennessee

Music City’s New Symphony Hall Organ
In its February 1982 issue, The Diapason published an article that challenged conventional wisdom. (See reprint of the article on pages 27–28 of this issue.) In it, Calvin Hampton made a convincing argument that an organ designed to be an instrument of the symphony orchestra must be radically different in many respects from a church organ or even a concert organ intended for solo use. A “normal” organ, even a fine one, could not pass his audition for symphony hall use. This really caught my attention. Since my background had included playing in and managing symphony orchestras, I was keenly aware of the uneasy relationship between orchestras and pipe organs. To managements, the organ was a headache. It used up too much space and too much money. Stagehands didn’t like the extra hassle of set-ups and working out quiet time for maintenance. Musicians didn’t like tuning to the organ or listening to its quinty mixtures and other thin, shrill sounds. Conductors never seemed satisfied with either the tone color or volume produced. Comments heard over and over again were: “I like that tone, can it be louder?” “Good balance, but I’d like a fuller, darker tone.” “Please(!)—keep with my beat!” The organist’s answers usually provoked frustrated and sometimes colorful comments about the inflexibility of the organ. The poor organist had even more problems than these: scarce rehearsal time, balance problems if the console was attached to the organ, poor sightlines if the console was on stage but too large or placed off in a corner.
The biggest problem of all was disappointment for the audience. The power of a modern symphony orchestra is so immense that most concert hall organs could not add to the drama of a fortissimo tutti. Against the gravity of the full orchestra, an ordinary organ can sound pathetically thin and upside down in balance, with trebles screaming out over the top of the ensemble. I had wondered for a long time why no one had attempted to solve all of these problems with an innovative approach. Calvin Hampton’s article gave me hope that someone would. About ten years later the tide began to turn. The musical issues were being addressed and many of them quite successfully. However, as a former instrumentalist and symphony manager, I thought that a more radical approach was needed.

Solving problems
Most of the behind-the-footlights practical problems can be solved by adopting an obvious, but, in some quarters, unpopular guideline: employ the fewest stops necessary to get the musical job done. This means an instrument that takes up less space, is less costly to purchase and more efficient to maintain. The case or chamber can be shallow for best tonal egress. Layout can be arranged for temperature—and thus tuning—stability; for example, all chorus work on one level, all reeds on one level. The console can be more compact, promoting sightlines and ease in setting and striking. The concept is easy enough to adopt, but what is that magic number of stops? What is the musical job to be done? How can we produce adequate power that will satisfy the audience?
First, it should be established that we are considering an instrument primarily for the Romantic and Modern repertoire. A properly equipped symphony hall should have one or two mechanical action stage organs to take care of the earlier repertoire. Previous experiments to include a “baroque” division with a small console as part of a large instrument have not been successful.
The primary use of the organ will be with orchestra. As a solo instrument, it might be used on occasion for choral accompaniment, silent movies as part of a pops series, and some special events. The solo organ recital has turned out to be a rarity in symphony halls. This is also true of other instrumental or vocal recitals. The reasons are simple: economics and scheduling.
If this musical job description is accurate, then an instrument in the size range proposed by Calvin Hampton (46 voices) would be ideal. Certainly any well-designed instrument of that size should also be able to render a very convincing recital program when needed. The key to a great performance is great tone, not great size.
If client and builder have the discipline to follow this Multum in Parvo plan rigorously, the question of tonal design becomes a matter of selecting stops that are absolutely essential and living without those that would be nice to have. Several classes of stops can be excluded with ease because they are duplicated in the symphony orchestra. Certainly there is no need for multiple strings and celestes or for orchestral reeds such as French Horn, English Horn, and Orchestral Oboe. The organ does not need items that would be considered necessities in a comprehensive church organ or in one specialized for some branch of the organ solo repertoire or for transcriptions.
What, then, are the elements that a symphony hall organ must have? Understanding what musical value the organ can add to the orchestra leads us to the answer. There are three characteristics of the organ that differentiate it very clearly from the orchestra. First, its frequency range is far greater. It can extend octaves below and above the orchestra. Extending the bass range has been the feature most appreciated by composers and orchestrators; however, increasing the treble range can be attractive, provided that it doesn’t get too loud! The second special characteristic of the organ is its unique tone—the diapason. This is a tone that cannot be produced by the orchestra and should, therefore, be the backbone of the organ when heard with the orchestra. The third element that should be most intriguing to composers is the organ’s ability to sustain indefinitely. This feature is most artistically displayed in connection with good expression boxes. A long, continuous diminuendo or crescendo can be most effective.

Four vital design points
Since there is a general understanding of basic organ tonal elements common to composers who write for orchestra as well as for the organ, a good symphony hall organ must include the minimum architecture of a normal three-manual traditional Romantic organ: diapason choruses and chorus reeds on each manual, representatives of stopped, open and harmonic flutes, a string with celeste, flute mutations, and the most common color reeds (Oboe, Clarinet, and Vox Humana). To make the organ capable of working in partnership with a modern symphony orchestra, the following tonal elements must be incorporated into this traditional scheme:
1. Profound Pedal. This is the most important element an organ can add to a symphony orchestra—bass one or two octaves below the double basses, bass tuba and contra bassoon. There must be at least one stop of such immense power that it will literally shake the floor. Stops of varying colors and dynamics with some under expressive control complete the Pedal.
2. Solo stops unique to the organ. These may be tones not found in the orchestra such as a diapason, stopped flute, and cornet or imitative stops that can be voiced at a power level not possible from their orchestral counterparts, such as solo harmonic flutes, strings, clarinets, and high pressure trumpets and trombas.
3. One soft stop capable of fading away to a whisper. Perhaps best in this role is a strongly tapered hybrid (or muted) stop.
4. An ensemble of exceptionally high power under expression. This cannot be raw power. It must be power with beauty, centered in the 8′ and 4′ range to give a sense of solidity and grandeur. Since symphony halls are generally drier acoustically than the typical organ and choral environment, it is even more important that this power be concentrated in the mid-frequency range and be of warm tonal character. The false sense of power created by excessive emphasis in high-pitched tones should be avoided. Orchestras don’t rely on a battery of piccolos for power, why should the organ? Piccolos can dominate an orchestra and so can mixtures, but that doesn’t make either effect beautiful. The kind of power needed comes from moderate to high wind pressures and stops voiced with rich harmonic content for good projection. Upperwork should be for tonal color rather than power. At least one diapason chorus should include a very high pitched mixture, a tone color unique to the organ, but it must not be loud. Eight-foot diapasons, chorus reeds, open flutes and strings should work together to create an ensemble capable of standing up to a full symphony orchestra. As someone who has sat in the midst of a symphonic brass section, I have a clear idea of the kind of power that is generated by trumpets, trombones and horns at fff. To compete without sounding shrill and forced requires high pressure diapasons and reeds, including a 32′ stop—all under expression to fit any situation.

Good tonal design must be supported by a mechanism that helps the organist solve all the performance problems mentioned above—an instrument that is as easy as possible to manage. The organ builder should employ every device at his command to give the organ musical flexibility so that it can take its place as an equal among the other instruments of the orchestra.

The Nashville project
We were given an opportunity to demonstrate the effectiveness of these ideas in our project for the Schermerhorn Symphony Center in Nashville. This was one of those projects that went smoothly from beginning to end, with everything falling into place and no road blocks in the way. Of the greatest importance to the success of this job was the client’s clear musical goal and realization that a really great organ can’t be all things to all people. We had a well-defined mission: to build an instrument that is a member of the orchestra. To this end we worked from the beginning with Andrew Risinger, organ curator and symphony organist and also organist/associate director of music at West End United Methodist Church in Nashville.
We were appointed, at the very beginning of the project, to the design team that included acoustician Paul Scarbrough of Akustiks in Norwalk, Connecticut and design architects David M. Schwarz, Architectural Services of Washington, D.C. I had worked with both as organ consultant for the Cleveland Orchestra in the renovation of Severance Hall and its E. M. Skinner organ. The design team, under the skillful management of Mercedes Jones, produced a hall that could not be more perfect from our point of view. Seating 1,872, it is beautiful in its traditional design, excellent proportions, and fine materials. It is of the traditional “shoebox” shape that everyone knows is perfect but that few architects are willing to employ. Since, under the direction of Paul Scarbrough, all of the traditional acoustical rules were followed, the result is, indeed, perfect.
Reverberation time is controlled by dampening material that may be added or subtracted at will. There is excellent balance, clarity, and pleasing resonance even in the lowest reverberation setting. With all dampening material lifted out of the way at the press of a button, the hall is ideal for most organ and choral repertoire. In addition, there is one very unusual and practical feature that has an added impact for the organ. The orchestra seating section can be converted to a flat open floor for pops concerts and special events. Most of the transformation is accomplished automatically through a labyrinth of gigantic machinery in the basement. The huge expanse of polished wood flooring adds significant reverberation. This feature also, interestingly enough, increases the usage of the organ. The hall is often rented for weddings. This is perhaps the only symphony hall organ in the world that has a reason to play the Mendelssohn and Wagner marches!
The organ is in an ideal position just above the choral risers at the rear of the stage. The casework was designed in close cooperation with the architectural team and Paul Fetzer whose company, Fetzer Architectural Woodwork of Salt Lake City, built the façade along with the other woodwork of the hall. It affords full tonal egress from the open front chamber behind it, which is shallow for accurate unforced projection. The organ is arrayed on three levels. Most flues are on the first level. Reeds, celestes, some flutes and offsets are on the second, and Pedal on the third, with the exception of the Trombone and Diaphone, which occupy a space extending all three levels. The bass octave of the 32′ Sub Bass is in a most unusual spot—located horizontally underneath the patron’s boxes to the left and right of the stage apron! These large scale pipes produce a soft 32′ tone that is felt as well as heard throughout the entire auditorium. The 32′ Trombone is in its own expression box, and the Swell includes our double-expression system, wherein the softest and most powerful voices are in a separate enclosure at the rear of the Swell with shades speaking into the Swell. The Vox Humana is in its own expression box inside the double expressive division of the Swell and so is, in effect, under triple expression. Accurate climate control has been provided, keeping the organ at constant humidity and temperature. The blower room in the basement has its own cooling system to neutralize the effects of blower heat build-up. Intake air is filtered.
The instrument employs our expansion cell windchests and electric-pneumatic action. This allows uniform, fast and silent action for all pipes no matter their pressure as well as easy console mobility and the borrowing of stops for maximum flexibility. Obviously borrowing is employed heavily in the Pedal, but it is also used on the Great, where the high pressure diapasons 8′ and 4′, string, stopped flute, Cornet and Solo reeds are all available independently. It also makes practical the extension of Pedal stops into the Solo and facilitates an interesting effect, the Tuben stop, which borrows the Swell reeds onto the Solo at unison pitch (Posaune up an octave at 8′ and Clarion down an octave at 8′ along with the 8′ Trumpet).
The console has the usual playing aids, but has been kept as simple and straightforward as possible to facilitate efficient rehearsals. There is a record-playback system—helpful for rehearsals and also for house tours; the playback mechanism can be remotely controlled by tour guides. With the press of a button they can start the blower and select a demonstration piece to be played for public tours, which are a popular attraction in Music City.

Tonal design
The two pillars of tone are diapasons and trumpets. The manual diapason choruses contrast in tonal color and power. The Swell chorus (Manual III) is based on a slotted 8′ Diapason of moderate power with a slightly tapered 4′ Principal and a 2′ Mixture, which is under double expression. The Great (Manual II) has a large scale 8′ Diapason with upperwork through 1⁄3′ Mixture and a slotted, smaller scale double. The Solo (Manual I) has the largest scale and most powerful chorus, all under expression and at 10″ pressure. Its mixture can be drawn with and without a tierce. The trumpets range from closed, tapered shallots on 10″ wind in the Swell to open parallel shallots on 5″ wind in the Great to open parallel shallots on 15″ wind in the Solo, where tromba-type tone is added by the Tubas and Trombone. Built around these pillars is an ensemble of stops with color, definition and sinew that project well to produce power in a manner similar to the orchestral instruments and centered at the orchestra’s pitch. Note that 64% of the stops are at 8′ and 4′ pitch. A most rewarding comment on this subject came after the opening concert in Nashville from the visiting executive director of one of the world’s leading orchestras, who remarked that he didn’t know that it was possible for an organ to be so powerful and at the same time so beautiful.
There are several special tonal features including a newly developed stop—the Diplophone. We wanted to include solo stops of heroic power from each family of tone. Our usual solo Gambas, Symphonic Flute (which employs five different types of pipe construction throughout its compass including double mouth and double harmonic pipes), Tibia Clausa, Corno di Bassetto and Tuba Magna represented the string, open flute, stopped flute, color reed, and chorus reed families, but we needed a solo diapason of equal power. We tested normal stentorphone pipes and then double-languid pipes without achieving the character of tone and power we were after. We then tried a double-mouth diapason. Mouths on either side of the pipe allow a greater mouth width than is possible with a single opening. This, combined with high pressure, produces tremendous power with smoothness and beauty. Finally, we included a powerful mounted Cornet (unusual for us) because it is a tone color completely outside the range of the orchestra and should offer interesting possibilities to contemporary composers.
For a stop that can fade away to nothing, we added our Cor Seraphique and Vox Angelique. These are very strongly tapered stops of the muted (or hybrid) variety. They are neither strings nor flutes and have a mysterious quality that is very attractive, with a harmonic structure that promotes projection when the Swell boxes are open, but is soft enough to disappear with both boxes closed. This stop is extended to 16′ to provide the same effect in the Pedal.
The Pedal includes all classes of tone at 16′ pitch: open wood, open metal, string, hybrid, stopped wood, and two different weights of chorus reed tone, both under expression. One of the most important 16′ voices is the Violone, which gives a prompt clear 16′ line to double and amplify the basses of the orchestra. The most unusual, and in some ways most important, stop of the organ is the 32′ Diaphone. Diaphones have a tone quality that ranges from a very dark, almost pure fundamental to a slightly reedy quality. Since this organ is equipped with a 32′ Trombone under expression, the Diaphone is voiced for pure fundamental tone of magnificent power. It produces more solid fundamental bass than a large open wood diapason and it speaks and releases promptly.
Our Pizzicato Bass stop, which gives a clean pointed bass line when added to other stops playing legato, is included because of its value in choral accompaniment. There is a special Sforzando coupler that is engaged only when the Sforzando lever, located above the swell shoes, is touched. It allows Solo stops to be momentarily added to the Great for accent. The Solo has a variable speed tremulant.

Installation and debut
The organ was installed in several phases, which went very smoothly due to the outstanding cooperation and support of the symphony staff, led by president and CEO Alan D. Valentine and general manager Mark F. Blakeman, as well as the excellent building contractors, American Constructors, Inc. The atmosphere was collegial and, yes, there is such a thing as southern hospitality. The casework, display pipes, blowers and large pedal pipes were installed in February–May 2006. We completed the mechanical installation of the organ during the summer of 2006. Tonal finishing was carried out during the summer of 2007. The leisurely and well-spaced schedule avoided the conflicts and last minute scrambles that usually cut tonal finishing time.
The organ was presented to the public at the opening night gala of the 2007–08 season with Leonard Slatkin, conductor, and Andrew Risinger, organist. The program included the Bach Toccata and Fugue in D minor, Duruflé Prelude and Fugue on the Name Alain, Barber Toccata Festiva, and the Saint-Saëns Symphony No. 3. It was recorded for broadcast on SymphonyCast. The exceptionally active Nashville chapter of the AGO has co-sponsored events starting with a lecture-demonstration evening and including the “International Year of the Organ Spectacular” recital featuring Vincent Dubois. The orchestra has presented several programs including a “Meet the Organ” demonstration for students, a “Day of Music” free to the community, a series of noontime recitals, and Thomas Trenney playing accompaniments to the silent films Phantom of the Opera at a Halloween program in 2007 and The Mark of Zorro in 2008. The organ has been used to accompany the symphony chorus in concert and also in several additional orchestra subscription concerts including works by Elgar and Respighi. The 2008–09 season has already presented Andrew Risinger in the Copland Symphony for Organ and Orchestra with new music director Giancarlo Guerrero conducting, the noon recital series continues, and more programs are on the way.
The instrument has been greeted with enthusiasm from the artistic staff of the orchestra and the musicians. The public has embraced it warmly and we look forward to the 2012 AGO convention, where it will be one of the featured instruments.
Jack M. Bethards
President and Tonal Director
Schoenstein & Co
.

On behalf of Louis Patterson, V.P. and Plant Superintendent; Robert Rhoads, V.P. and Technical Director (retired); Chuck Primich, Design Director; Mark Hotsenpiller, Head Voicer;
department heads Chet Spencer, Chris Hansford and Mark Harter;
and technicians David Beck, Filiberto Borbon, Peter Botto, Dan Fishbein, Oliver Jaggi, George Morten, Humberto Palma, Tom Roberts, Dan Schneringer, Patricia Schneringer, Donald Toney, William Vaughan and William Visscher.

Cover photo by Louis Patterson

Schoenstein & Co.

The Martin Foundation Organ
The Nashville Symphony Orchestra
Schermerhorn Symphony Center
Nashville, Tennessee
47 voices, 64 ranks
Electric-pneumatic action

GREAT – II (5″ wind)
16′ Double Open Diapason 61 pipes
8′ Diplophone (Solo)
8′ Grand Open Diapason (Solo)
8′ First Open Diapason 61 pipes
8′ Second Open Diapason 12 pipes
8′ Gamba (Solo)
8′ Tibia Clausa (Solo)
8′ Harmonic Flute 61 pipes
8′ Salicional (Swell)
8′ Bourdon (metal) 61 pipes
8′ Lieblich Gedeckt
(borrow with Bourdon bass)
8′ Cor Celeste II (Swell)
4′ Octave (Solo)
4′ Principal 61 pipes
4′ Lieblich Gedeckt 61 pipes
2′ Fifteenth 61 pipes
11⁄3′ Mixture IV 200 pipes
1⁄3′ Mixture III 146 pipes
8′ Trumpet 61 pipes
4′ Clarion 61 pipes
8′ Cornet V (Solo)
8′ Tuba Magna (Solo)
8′ Tuba (Solo)
8′ Corno di Bassetto (Solo)

SWELL – III (enclosed, 5″ wind)
16′ Lieblich Bourdon (wood) 12 pipes
8′ Open Diapason 61 pipes
8′ Stopped Diapason (wood) 61 pipes
8′ Echo Gamba 61 pipes
8′ Vox Celeste 61 pipes
8′ Salicional 49 pipes
(Stopped Diapason bass)
4′ Principal 61 pipes
4′ Harmonic Flute 61 pipes
22⁄3′ Nazard 61 pipes
2′ Harmonic Piccolo 61 pipes
13⁄5′ Tierce 54 pipes
8′ Oboe 61 pipes
Tremulant
Stops under Double Expression†
16′ Cor Seraphique 12 pipes
8′ Cor Seraphique 61 pipes
8′ Voix Angelique (TC) 49 pipes
2′ Mixture III–V 244 pipes
16′ Posaune 61 pipes
8′ Trumpet 61 pipes
4′ Clarion 61 pipes
8′ Vox Humana†† 61 pipes
†Flues and Vox 6″ wind; Reeds 11½″
††Separate Tremulant; separate expression box

SOLO – I (enclosed, 10″ wind)
8′ Grand Open Diapason 61 pipes
8′ Symphonic Flute† 61 pipes
8′ Gamba 61 pipes
8′ Gamba Celeste 61 pipes
4′ Octave 61 pipes
2′ Quint Mixture IV
2′ Tierce Mixture V 270 pipes
8′ Tuba† 61 pipes
8′ Harmonic Trumpet† 61 pipes
8′ Tuben III††
8′ Corno di Bassetto† 61 pipes
Tremulant
Tremulant (variable)
Unenclosed Stops
8′ Diplophone 29 pipes
(ext Pedal Open Wood)
8′ Tibia Clausa 29 pipes
(ext Pedal Sub Bass)
8′ Cornet V (TG, 5″ wind) 185 pipes
16′ Trombone 5 pipes
(ext Pedal Trombone)
8′ Tuba Magna† 61 pipes
†15″ wind
††Swell Posaune, Trumpet and Clarion at 8′ pitch

PEDAL (4½″, 5″, 7½″, 10″, 15″ wind)
32′ Diaphone 12 pipes
32′ Sub Bass 12 pipes
16′ Diaphone 32 pipes
16′ Open Wood 32 pipes
16′ Violone 32 pipes
16′ Diapason (Great)
16′ Cor Seraphique (Swell)
16′ Sub Bass 32 pipes
16′ Bourdon (Swell)
8′ Open Wood 12 pipes
8′ Open Diapason (Swell)
8′ Principal 32 pipes
8′ Violone 12 pipes
8′ Gamba (Solo)
8′ Flute (Great)
8′ Sub Bass 12 pipes
8′ Bourdon (Swell)
4′ Fifteenth 32 pipes
4′ Flute (Great)
8′ Pizzicato Bass†
32′ Trombone†† 12 pipes
16′ Trombone†† 32 pipes
16′ Posaune (Swell)
8′ Tuba Magna (Solo)
8′ Trombone†† 12 pipes
8′ Posaune (Swell)
4′ Trombone†† 12 pipes
4′ Corno di Bassetto (Solo)
†8′ Sub Bass with Pizzicato Relay
††Enclosed in its own expression box

Couplers
Intramanual
Swell 16, Unison Off, 4
Solo 16, Unison Off, 4

Intermanual
Great to Pedal 8
Swell to Pedal 8, 4
Solo to Pedal 8, 4
Swell to Great 16, 8, 4
Solo to Great 16, 8, 4
Swell to Solo 16, 8, 4
Solo to Swell 8

Special
Pedal Tutti to Solo
Solo to Great Sforzando
All Swells to Swell
Manual I/II transfer piston with indicator

Mechanicals
Peterson ICS-4000 system with:
256 memory levels
62 pistons and toe studs
programmable piston range for each memory level
Piston Sequencer
10 reversible controls including Full Organ
Four balanced pedals with selector for expression and Crescendo
Record/Playback system with remote control
Adjustable bench

Mixture Compositions
Great IV
C1 A10 D15 A#35 G#45
19 15 12
22 19 15 12
26 22 19 15 12
29 26 22 19 15

Great III
C1 A10 D15 C25 A#35 G#45 B48 F#55
33 29 26
36 33 29 26 22 19 15 12
40 36 33 29 26 22 19 15

Swell III–V
C1 C#14 B24 A#47 D#52
15 8 8
19 15 12 8
22 19 15 12 8
22 19 15 12
22 19 15

Solo V
C1 A46 C#50 F#55
12
15 12
17 15 12
19 17 15 12
22 19 17 15

Solo IV derived from Solo V, without tierce

Tonal Families
Diapason† 17 36%
Open Flutes 7 15%
Stopped Flutes 4 9%
Strings 5 11%
Hybrids 2 4%
Chorus Reeds 9 19%
Color Reeds 3 6%
47 100%

†Includes Diaphone and Salicional

Pitch Summary
Sub
32′ 3 6%
16′ 6 13% 19%

Unison
8′ 22 47%
4′ 8 17% 64%

Super
22⁄3′ 1 2%
2′ 4 9%
Above 3 6% 17%
47 100% 100%

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Raising the roof will not be necessary

Schoenstein & Co. Opus 147
First United Methodist Church, Birmingham, Michigan

Fact: An organ’s most important stop is the room in which it plays.
Lesser-Known Fact: Improvement opportunities exist for churches with poor acoustics that go beyond dismissing the carpet and pew cushions.

When First United Methodist Church of Birmingham, Michigan received a generous gift for the replacement of its aging Möller organ, the church quickly realized a careful study of all aspects of the sanctuary should be undertaken. It was felt the new instrument, as well as their entire worship experience, would benefit from an improved acoustical environment.

Church renovation
Our first visit to Birmingham found a 1952 building of fine materials that enveloped an acoustically dead sanctuary. Jack Bethards, Schoenstein & Co. President and Tonal Director, reported that “When I first looked at this room, I wondered if there was any hope. The room had hardly any resonance, and there were frequency hot spots that added a kind of harshness to musical tone. Worst of all, it was tough to sing in the room because people felt isolated from one another.“
The new organ could only achieve its potential if the acoustic of the building were improved. Every possible idea was discussed, including raising the roof to increase cubic volume. This would have added millions of dollars to the project, and it was hoped that significant enough improvement could be attained through less invasive methods.
Ultimately a plan of action was decided upon to:
• Install a beautiful and reflective hard-tile floor in the chancel.
• Install new chancel walls with increased organ tone-opening area.
• Change the height of the chamber ceilings to eliminate sound-defeating pockets.
• Install an Electronic Reflected Energy System (ERES) by the Jaffe-Holden Company.

The project also grew in scope to address other needs:
• Improve sight lines for the congregation by raising the chancel floor, along with other changes enabling flexibility for a variety of programs in addition to Sunday morning worship.
• Install an improved, quieter, HVAC system.
• Updates to lighting, the public address system, walls and floor coverings.

The result is one of the finest sanctuary renovations we have seen. The reflective flooring in the chancel has provided a pleasant natural bloom of resonance, and the Jaffe-Holden system has added a tasteful and subtle acoustical ambiance only otherwise possible with a roof raising. The new HVAC system is accurate, well balanced, and above all, silent. The improved temperature and humidity control will positively affect the stability and longevity of the organ. The renovation team did a magnificent job of freshening up and improving the visual elements of the room.

Fact: An organ’s most important stop is the room in which it plays.
Lesser-Known Fact: A properly designed and built organ can make a room sound better than its acoustic.

The Schoenstein organ
In the organ dedication program notes, Jack Bethards addressed the organ and its relationship to the church. “With all of the elements working together to enhance music, a logical question would be why was a new organ necessary? Certainly the sound of the old organ would have been enhanced, but would it have been enough to solve the various musical problems that faced Doris and Chris Hall (organist and director of music respectively) when they called us in to study the situation? Simply put, the old organ was designed to match a particular approach to a limited part of the organ solo repertoire; the new organ is designed to accompany the church service.”
The new organ (three manuals, 38 voices, 46 ranks) has a vastly different effect in the room from the previous instrument, despite its similar physical layout. The unenclosed Great is divided on either side of the altar and takes advantage of its favorable location, speaking down the axis of the church. The Choir is located in one side chancel chamber and the Swell in the other. A small Antiphonal division across the balcony wall complements the organ by drawing the sound of the chancel organ rearward to support congregational singing.
According to Bethards, “The biggest concern in a church organ is to have a large variety of different tone qualities. There are two reasons for this. First, the organ is played by and heard by the same people week after week, year after year. To sustain musical interest, the sound can’t be the same all the time. Second, a good choir sings just about every kind of choral music written. This demands great subtlety in accompaniment with different tone colors at a multitude of volume levels.”
Eight-foot diapasons of various types were used throughout to provide richness and warmth of tone in both melody and bass pitch. The old organ overemphasized upperwork, and the effect of the ensemble was harsh. With the goal being an effect of nobility, full choruses were maintained, but less upperwork was planned and more foundational stops were added to lower the tonal center of gravity and provide contrasting color. Note the Great with its four eight-foot stops, a Harmonic Flute and Gamba in addition to the Open Diapason and Bourdon.
True string stops of varied character complement each division, with an additional hybrid or muted Corno Dolce in the Swell. A wide variety of flutes were employed with the emphasis on full and double-length open construction rather than half-length stopped flutes that are less successful in rooms with drier acoustics.
Solo reeds, including the Oboe and Clarinet, are more orchestral in character than the old organ. There are four chorus reeds, ranging in volume from mezzo forte of the Choir Trumpet, through the Swell Trumpet and Contra Fagotto’s forte to the Tuba’s fortissimo, vital especially for festive services and weddings.
Schoenstein’s double expression system is used in the Swell organ. The softest and loudest stops of the division are grouped in the Inner Swell chamber, behind a second set of expression shades controllable by a separate shoe. This allows for very smooth and dramatic crescendos with a minimum of stop changes.
The new instrument is six ranks smaller than the old, but projects far more effectively due to its energized tone that enables more effective egress from enchambered installations. The highest wind pressure on the previous organ was four inches; this pressure is still found in the new unenclosed Great. Five inches is the lowest pressure for enclosed stops. Enchambered offset basses are on still higher pressure to further help them project, as are the unenclosed Pedal Subbass and Double Open Diapason (the bottom octave of which is an Open Wood).
The double-enclosed Swell chorus reeds and Mixture are on ten inches, as is the Choir Tuba. As Jack Bethards points out, “Pressure does not necessarily affect loudness, but it certainly affects carrying power and smoothness of tone. A selection of stops that are highly energized in tone and, therefore, can project their sound over a long distance, is one of the keys to a successful enchambered organ.”

Fact: An organ’s most important stop is the room in which it plays.
Lesser-Known Fact: The design elements that favor acoustical projection also favor the variety of tone needed in a church organ.

Todd Wilson played the organ dedication concert in November 2005. Other recent recitalists in the church’s Live at First concert series include Frederick Swann, Doris Hall, and Tom Trenney.
As is nearly always the case, the success of this project is due to the efforts of too many people to name in this limited space. We had wonderful support in every area and would like to especially thank the church staff and the dedicated volunteers who worked under organ committee chairperson Dale Parker and project manager Darrell White. We are also appreciative of the church’s fine musicians, Doris and Chris Hall, who make the new organ shine.
And raising the roof was not necessary.
—David Beck
Installation crew leader &
assistant voicer
Schoenstein & Co.

First United Methodist Church, Birmingham, Michigan
Three manuals and pedal
38 voices, 46 ranks
Electric-pneumatic action

GREAT (II – In Display)
16′ Contra Viola (Choir)
8′ Open Diapason 61 pipes
8′ Harmonic Flute 61
8′ Gamba 61
8′ Bourdon 61
4′ Principal 61
4′ Spire Flute 61
2-2⁄3′ Twelfth 61
2′ Fifteenth 61
2′ Mixture (III–IV) 187
8′ Tuba (Choir)
8′ Trumpet (Choir)
8′ Clarinet (Choir)
Chimes (Deagan in Choir box)
25 tubes

SWELL (III – Enclosed)
16′ Bourdon (wood) 12 pipes
8′ Open Diapason 61
8′ Stopped Diapason (wood) 61
8′ Echo Gamba 61
8′ Gamba Celeste (TC) 49
8′ Corno Dolce 49
(Stopped Diapason bass)
4′ Gemshorn 61
4′ Harmonic Flute 61
2′ Flageolet 61
8′ Oboe 61
Tremulant
Stops Under Double Expression
2′ Mixture (III–IV) H 209
16′ Contra Fagotto H 61
8′ Trumpet H 61
H = Heavy Wind
Swell 16′
Swell Unison Off
Swell 4′

CHOIR (I – Enclosed)
16′ Contra Viola 12 pipes
8′ Viola Pomposa 61
8′ Viola Celeste 61
8′ Concert Flute (wood) 61
8′ Lieblich Gedeckt 49
(Concert Flute bass)
4′ Fugara 61
4′ Lieblich Flute 12
2-2⁄3′ Nazard (from Lieblich Flute)
2′ Harmonic Flute 61
1-3⁄5′ Tierce (TC) 42
2′ Mixture (II–III) 173
8′ Trumpet 61
8′ Clarinet 61
Tremulant
16′ Ophicleide H 12
8′ Tuba H 61
4′ Tuba Clarion H 12
H = Heavy Wind
Choir 16′
Choir Unison Off
Choir 4′

ANTIPHONAL (Floating – In Display)
8′ Open Diapason 61 pipes
8′ Dulciana (Bourdon bass) 49
8′ Bourdon 61
4′ Principal 61
Antiphonal 4′

ECHO (Prepared)

PEDAL (In Display with Great)
32′ Resultant
16′ Double Open Diapason 12 pipes
16′ Sub Bass 32
16′ Contra Viola (Choir)
16′ Bourdon (Swell)
8′ Principal 32
8′ Diapason (Swell)
8′ Flute (Great)
8′ Viola (Choir)
8′ Bourdon (Swell)
4′ Fifteenth 12
4′ Flute (Great)
16′ Ophicleide (Choir)
16′ Contra Fagotto (Swell)
8′ Tuba (Choir)
8′ Fagotto (Swell)
4′ Clarinet (Choir)

Couplers
Great to Pedal
Swell to Pedal
Swell to Pedal 4′
Choir to Pedal
Choir to Pedal 4′

Swell to Great 16′
Swell to Great
Swell to Great 4′
Choir to Great 16′
Choir to Great
Choir to Great 4′

Swell to Choir 16′
Swell to Choir
Swell to Choir 4′

Antiphonal on Pedal
Antiphonal on Great
Antiphonal on Choir

Echo on Swell
Echo on Choir

Note: Antiphonal and Echo intramanual couplers read through intermanual couplers.

Mechanicals
Solid state capture combination action with:
100 memories
61 pistons and toe studs
Programmable piston range for each memory
Multiple Crescendo and Full Organ programs
5 Reversibles including Full Organ
Adjustable bench

Mixture Compositions
Great 2′ (III–IV)
C1 D15 B36 G#45
15 12
19 15 12
22 19 15 12
22 19 15

Swell 2′ (III–IV)
C1 B24 F#43 C#50
15 12 8
19 15 12 8
22 19 15 12
22 19 15

Choir 2′ (II–III)
C1 A22 D#52
15 12
19 15 12
22 19 15

Tonal analysis of manual voices
Pitch summary
16′ 5 13%
8′ 19 50%
4′ 6 16%
2-2⁄3′ 1 3%
2′ 6 15%
Above 2′ 1 3%
38 100%

Tonal families
Diapasons 14 37%
Open Flutes 7 18%
Stopped Flutes 5 13%
Hybrids 1 3%
Strings 5 13%
Chorus Reeds 4 11%
Color Reeds 2 5%
38 100%

Organs in the Land of Sunshine: A look at secular organs in Los Angeles, 1906–1930

James Lewis

James Lewis is an organist, organ historian and commercial photographer. He has researched the organs of California for over 35 years and has published articles on the subject in several periodicals. This article is a small section of a much larger text of a forthcoming book from the Organ Historical Society.

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Introduction
Los Angeles is home today to many wonderful organs. During the early twentieth century, pipe organs were constructed for spaces beyond the typical church, theater, or university setting. This article traces the histories of over a dozen pipe organs in private homes, social clubs, school and church auditoriums, and even a home furnishings store. It provides a glimpse of organbuilding—and life—in a more glamorous, pre-Depression age.

Temple Baptist Church
Come back in time to the spring of 1906, where we find the Temple Baptist Church of Los Angeles readying their new building for opening. Although the new complex was financed by a religious organization, it was not designed as a traditional church building. Architect Charles Whittlesey produced plans that included a 2700-seat theater auditorium with a full working stage, two smaller halls, and a nine-story office block, providing the burgeoning city with a venue for various entertainments and civic events, and Temple Church with facilities for church activities. Even though the official name of the building was Temple Auditorium, it was also known over the years as Clune’s Theatre and Philharmonic Auditorium. In addition to church services, the Auditorium was used for concerts, public meetings, ballet, silent motion pictures, and beginning in 1921, the Los Angeles Philharmonic Orchestra and the Light Opera Association.
It was the first steel-reinforced poured concrete structure in Los Angeles. The auditorium had five narrow balconies and was decorated in a simplified Art Nouveau-style influenced by Louis Sullivan’s Auditorium in Chicago. Color and gold leaf were liberally used, and the concentric rings of the ceiling over the orchestra section were covered with Sullivanesque ornamentation and studded with electric lights. Concealed behind this area, on either side of the stage, was the organ.
The Auditorium Company ordered a large four-manual organ (Opus 156) from the Austin Organ Company of Hartford, Connecticut. Similar to the auditorium itself, the instrument was used more for secular occasions than for church services. It was the first large, modern organ in Los Angeles and contained such innovations as second touch, high wind pressures, an array of orchestral voices, and an all-electric, movable console with adjustable combination action.
The instrument had a partially enclosed Great division, with a large selection of 8′ stops that included four 8′ Open Diapasons. Second touch was available on the Swell keyboard through a Great to Swell coupler. The Choir division was labeled Orchestral and contained a variety of soft string and flute stops along with three orchestral reeds. The Solo division was on 25″ wind pressure and unenclosed except for the Harmonic Tuba, unified to play at 16′, 8′ and 4′ pitches. 25″ wind pressure was also used in the Pedal division for the Magnaton stop, playable at 32′ and 16′. An article about the Auditorium in the Architectural Record magazine stated “the roof is reinforced with steel so that the tones of the large organ will not cause any structural damage.”1 A mighty organ, indeed!
The four-manual console was located in the orchestra pit and movable within a range of 50 feet. Its design was influenced by the early consoles of Robert Hope-Jones and featured two rows of stop keys placed above the top keyboard, a style affectionately known as a “toothbrush console,” because to an active imagination the two rows of stop keys looked like the rows of bristles on a toothbrush.
In 1912, Dr. Ray Hastings (1880–1940) was appointed house organist, and he played for church services, silent motion pictures, radio broadcasts, public recitals, and with the Los Angeles Philharmonic Orchestra.2
Temple Auditorium and its mighty Austin organ served Los Angeles for many years, but by the 1950s the place was beginning to look a bit tired. Sometime after World War II, the interior was painted a ghastly shade of green, covering up all the color and gold of the original decorative scheme. In 1965 the Philharmonic Orchestra and Light Opera both moved to the new Los Angeles Music Center and the Auditorium never again operated as a theater.
The organ began to develop serious wind leaks, and the 25″-wind-pressure Solo division and Pedal Magnaton were finally disconnected. A supply-house console replaced the original Austin console in the 1960s and was moved out of the orchestra pit to the stage.
Sunday morning services of Temple Baptist Church became sparsely attended as people moved out of Los Angeles to the new suburbs. There did not seem to be any use for the old Auditorium, and the complex finally succumbed to the wrecker’s ball in 1985. The pipework from the Austin organ was sold off piecemeal and the chests were left in the chambers to come down with the demolition of the building. What began as Los Angeles’s first, modern organ of the 20th-century came to an ignominious end.

Temple Auditorium, Los Angeles
Austin Organ Company, 1906, Opus 156

GREAT
(unenclosed)

16′ Major Diapason
16′ Contra Dulciana
8′ First Diapason
8′ Second Diapason
8′ Third Diapason
8′ Gross Flute
8′ Claribel Flute
4′ Octave
4′ Hohl Flute
3′ Twelfth
2′ Fifteenth
(enclosed)
8′ Horn Diapason
8′ Violoncello
8′ Viol d’Amour
8′ Doppel Flute
4′ Fugara
III Mixture
16′ Double Trumpet
8′ Trumpet
4′ Clarion

SWELL
16′ Gross Gamba
8′ Diapason Phonon
8′ Violin Diapason
8′ Gemshorn
8′ Echo Viole
8′ Vox Angelica
8′ Gemshorn
8′ Rohr Flute
8′ Flauto Dolce
8′ Unda Maris
8′ Quintadena
4′ Principal
4′ Harmonic Flute
2′ Flageolet
III Dolce Cornet
16′ Contra Posaune
8′ Cornopean
8′ Oboe
8′ Vox Humana
Tremolo
Vox Humana Tremolo

ORCHESTRAL
16′ Contra Viole
8′ Geigen Principal
8′ Viole d’Orchestre
8′ Viole Celeste
8′ Vox Seraphique
8′ Concert Flute
8′ Lieblich Gedackt
4′ Violina
4′ Flauto Traverso
2′ Piccolo Harmonique
16′ Double Oboe Horn
8′ Clarinet
8′ Cor Anglais
Tremolo

SOLO
8′ Grand Diapason
8′ Flauto Major
8′ Gross Gamba
4′ Gambette
4′ Flute Ouverte
2′ Super Octave
8′ Orchestral Oboe
8′ Saxophone (synthetic)
16′ Tuba Profunda
8′ Harmonic Tuba (ext)
4′ Clarion (ext)

PEDAL
32′ Contra Magnaton
32′ Resultant
16′ Magnaton
16′ Major Diapason
16′ Small Diapason (Gt)
16′ Violone
16′ Bourdon
16′ Dulciana (Gt)
16′ Contra Viole (Orch)
8′ Gross Flute
8′ ‘Cello
8′ Flauto Dolce
4′ Super Octave
16′ Tuba Profunda (Solo)
8′ Tuba (Solo)

Swell Sub
Swell Octave
Orchestral Sub
Orchestral Octave
Solo Sub
Solo Super
Swell to Pedal
Swell to Pedal Octave
Great to Pedal
Orchestral to Pedal
Solo to Pedal
Swell to Great Sub
Swell to Great Unison
Swell to Great Octave
Orchestral to Great Sub
Orchestral to Great Unison
Solo to Great Unison
Solo to Great Octave
Great to Swell Unison Second Touch
Swell to Orchestral Sub
Swell to Orchestral Unison
Swell to Orchestral Octave
Solo to Orchestral Unison

Tally’s Broadway Theatre
Eight years after the Temple Auditorium organ was installed, Tally’s Broadway Theatre took delivery on a four-manual organ advertised as “The World’s Finest Theatre Pipe Organ.” The 47-rank organ had been ordered early in 1913 from the Los Angeles builder Murray M. Harris, but by the time it was installed in 1914 the name of the firm had been changed to the Johnston Organ Company and the factory moved to the nearby suburb of Van Nuys.
Tally’s instrument must have been the original “surround sound,” as most of the pipework was installed in shallow chambers extending down both sides of the rectangular-shaped auditorium. The Choir division was on the stage and had its own façade, while the Echo was behind a grille at one side of the stage. Positioned on a lift in the orchestra pit, the four-manual drawknob console was equipped with a roll player.
This was not the sort of theatre organ that would come into prominence during the 1920s, a highly unified instrument full of color stops all blended together by numerous tremolos. Tally’s organ was not that much different from a Murray M. Harris church organ, except for the saucer bells and a lack of upperwork.
Installation was still underway when it came time for the opening concert, but since the show must go on, the event took place. A reviewer wrote “while the unfinished and badly out of tune instrument, under the skillful manipulation of an excellent performer, did give pleasure to a large portion of the big audience, nevertheless it was an unfinished and badly out of tune instrument and as such it could not favorably impress the ear of the critic.”3
Charles Demorest, a former student of Harrison Wild in Chicago, who played at Tally’s, was also the organist at the Third Church of Christ, Scientist, and gave Monday afternoon recitals on the organ in Hamburger’s department store. In the May, 1914 edition of The Pacific Coast Musician it was mentioned that “Charles Demorest is doing much to uphold good music for the motion picture theatres by the quality of his organ work at Tally’s Broadway Theatre, Los Angeles, where he has a concert organ of immense resources at his command. This instrument is a four-manual organ equipped with chimes, saucer bells, concert harp and echo organ. Mr. Demorest plays a special program every Wednesday afternoon at four o’clock where an orchestra and soloists further contribute to the excellence at the Tally Theatre.”4
In the mid-1920s, the May Company department store next door to Tally’s was doing a booming business and needed larger quarters. Negotiations with Tally led to the theater being purchased and torn down to make way for a greatly expanded May Company building. The organ was crated up and moved to Mr. Tally’s Glen Ranch, where it was stored in a barn. It was eventually ruined by water damage when the roof leaked.

Tally’s Broadway Theatre
Johnston Organ Company, 1914

GREAT
16′ Double Open Diapason
8′ First Open Diapason
8′ Second Open Diapason
8′ Viola
8′ Viol d’Amour
8′ Tibia Clausa
8′ Clarabella
4′ Octave
4′ Wald Flute
8′ Trumpet
Cathedral Chimes
Concert Harp
Saucer Bells

SWELL
16′ Bourdon
8′ Open Diapason
8′ Violin Diapason
8′ Violin
8′ Voix Celeste
8′ Aeoline
8′ Stopped Flute
4′ Harmonic Flute
2′ Harmonic Piccolo
16′ Contra Fagotto
8′ Horn
8′ Oboe
8′ Vox Humana

CHOIR
16′ Double Dulciana
8′ Geigen Principal
8′ Dulciana
8′ Lieblich Gedackt
8′ Quintadena
4′ Dulcet
8′ Clarinet

SOLO
8′ Diapason Phonon
8′ Harmonic Flute
8′ Tibia Plena
8′ Harmonic Tuba
8′ Orchestral Oboe

ECHO
8′ Flauto Dolce
8′ Unda Maris
8′ Concert Flute
8′ Orchestral Viol
4′ Flute d’Amour
8′ Vox Mystica

PEDAL
32′ Acoustic Bass
16′ Open Diapason
16′ Bourdon
16′ Contra Basso (Gt)
16′ Dulciana (Ch)
16′ Lieblich Gedackt (Sw)
8′ Violoncello
8′ Gross Flute
8′ Flute
16′ Trombone

Swell Tremolo
Choir Tremolo
Solo Tremolo
Echo Tremolo

Trinity Auditorium
In 1914, inspired perhaps by the success of Temple Auditorium, Trinity Southern Methodist Church opened their new Trinity Auditorium, a large Beaux Arts structure on South Grand Avenue containing a multi-use 1500-seat auditorium and a nine-story hotel with rooftop ballroom.
An organ was ordered from the Murray M. Harris Company, but just like the Tally’s Theatre organ, it was installed under the name of the Johnston Organ Company. The organ was a four-manual instrument of 63 ranks situated above the stage floor, but within the proscenium arch, with an Echo division in the dome at the center of the room. The drawknob console was at one side of the orchestra pit.
The tonal design was typical of a large, late Murray Harris organ, boasting an assortment of 8′ stops and big chorus reeds on both the Great and Solo, but without the usual Great mixture. The Tibias, Diapason Phonon in the Swell and the slim-scale strings of the Solo division, stops not normally found on Harris organs, show the influence of Stanley Williams, the firm’s voicer since 1911, who had worked with Hope-Jones in England.
Arthur Blakeley was house organist and played for church services, silent motion pictures, weekly public recitals and with the Los Angeles Philharmonic Orchestra, who used the building from 1918 to 1921. It was noted that by May 1915, Blakeley had provided music for 108 performances of a film entitled “Cabiria” and played over one hundred different compositions in his weekly recitals, ranging from works by Bach, Handel and Wagner to Reubke’s Sonata on the 94th Psalm.5
There was one area in which Trinity Auditorium failed to emulate Temple Auditorium—financing. To construct the auditorium and hotel complex the church secured such a heavy mortgage that one newspaper account claimed it was financed clear into the 21st century. A few years after it opened, Trinity Auditorium was taken over by a management company that continued to operate it as a public venue, and the church moved to humbler quarters.
Trinity Auditorium was a popular place for meetings of the local AGO chapter, and among the artists heard there were Pietro Yon, Charles Courboin, and Clarence Eddy. The organ continued to be used for films, concerts and later on, radio broadcasts, but by the 1940s it had become a liability. To save the expense of upkeep on an instrument that by then was only occasionally used and to secure more space on the stage, the organ was removed and broken up for parts.

Trinity Auditorium
Johnston Organ Company, 1914

GREAT
16′ Double Open Diapason
8′ First Open Diapason
8′ Second Open Diapason
8′ Viola di Gamba
8′ Viol d’Amour
8′ Tibia Clausa
8′ Doppel Floete
4′ Octave
4′ Harmonic Flute
22⁄3′ Octave Quint
2′ Super Octave
16′ Double Trumpet
8′ Trumpet
4′ Clarion
Cathedral Chimes

SWELL
16′ Lieblich Bourdon
8′ Diapason Phonon
8′ Violin Diapason
8′ Salicional
8′ Aeoline
8′ Vox Celeste
8′ Lieblich Gedackt
8′ Clarabella
4′ Principal
4′ Lieblich Floete
4′ Violina
2′ Harmonic Piccolo
IV Dolce Cornet
16′ Contra Fagotto
8′ Cornopean
8′ Oboe
Tremolo

CHOIR
16′ Double Dulciana
8′ Geigen Principal
8′ Dulciana
8′ Quintadena
8′ Melodia
4′ Wald Floete
4′ Dulcet
8′ Clarinet
Tremolo
Concert Harp

SOLO
8′ Gross Gamba
8′ Tibia Plena
8′ Harmonic Flute
8′ Viole d’Orchestre
8′ Viole Celeste
16′ Ophicleide
8′ Tuba
4′ Tuba Clarion

ECHO
16′ Echo Bourdon
8′ Echo Diapason
8′ Viol Etheria
8′ Unda Maris
8′ Concert Flute
4′ Flauto Traverso
8′ Vox Humana
Tremolo
Concert Harp (Ch)

PEDAL
32′ Double Open Diapason
32′ Resultant
16′ Open Diapason
16′ Violone
16′ Tibia Profundo
16′ Bourdon
16′ Lieblich Gedackt (Sw)
16′ Dulciana (Ch)
16′ Echo Bourdon (Echo)
8′ Octave
8′ Violoncello
8′ Flute
16′ Trombone
16′ Ophicleide (Solo)
8′ Tuba (Solo)

University of Southern California
In 1920, the University of Southern California placed an order for a large concert organ to be built by the Robert-Morton Organ Company and installed in the new Bovard Auditorium on the USC campus. Under a headline reading “Organ Attracts,” the Los Angeles Times told that “a great increase of interest is being manifested by the faculty and student body of the organ department, USC, since the announcement was recently made that the new organ, one of the largest in the southwest, is soon to be installed in the auditorium of that institution. The instrument will be provided with eighty stops and 500 pipes.”6 Well, perhaps a few more than 500!
Bovard is a large auditorium graced with a dollop of Gothic tracery, originally seating 2,100 on the main floor and in two balconies. The Robert-Morton organ, the largest instrument built by the firm, was located in concrete chambers on either side of the stage and completely enclosed, except for the 16′ Pedal Bourdon. It was not an ideal installation, as the Swell and Choir divisions were placed so they spoke onto the stage area and the Great and Solo were located in the auditorium proper. For organ recitals, the stage curtains had to be open so the audience could hear the entire instrument.
By 1920, the builder no longer made drawknob consoles, so the Bovard organ was supplied with a four-manual horseshoe console. It was placed in the orchestra pit and had color-coded stop keys; diapasons were white, flutes blue, strings amber, reeds red, and the couplers were short-length black stop keys placed over the top keyboard.7
The organ had two enormous 32′ stops. When the instrument was completed at the Van Nuys factory, low C of the 32′ Bombarde was assembled outside the main building and supplied with air so that its sound could be demonstrated for the local residents.
In June of 1921, the organ was dedicated in two recitals given by the British virtuoso Edwin Lemare. It was a well-used instrument in its day, providing music for university events, concerts, commencement exercises, and it served as the major practice and recital organ for many USC organ students.
By the mid-1970s the organ had fallen out of favor and some of the pipework was vandalized by students, causing the instrument to become unplayable. It was finally removed from the auditorium in 1978, and the undamaged pipework was sold for use in other organs.

University of Southern California
Robert-Morton Organ Company, 1921

GREAT
16′ Double Open Diapason
8′ First Open Diapason
8′ Second Open Diapason
8′ Third Open Diapason
8′ Viola
8′ Erzahler
8′ Doppel Flute
8′ Melodia
4′ Octave
4′ Wald Floete
2′ Flageolet
V Mixture
16′ Double Trumpet
8′ Trumpet
4′ Clarion

SWELL
16′ Bourdon
8′ Open Diapason
8′ Horn Diapason
8′ Salicional
8′ Celeste
8′ Aeoline
8′ Viol d’Orchestre
8′ Viol Celeste
8′ Stopped Diapason
8′ Clarabella
8′ Gemshorn
4′ Violin
4′ Harmonic Flute
2′ Piccolo
III Cornet
16′ Contra Fagotto
8′ Cornopean
8′ Flugel Horn
8′ Oboe
8′ Vox Humana
4′ Clarion
Tremolo

CHOIR
16′ Contra Viole
8′ Geigen Principal
8′ Dulciana
8′ Quintadena
8′ Concert Flute
8′ Flute Celeste
4′ Flute
22⁄3′ Nazard
2′ Piccolo

SOLO
8′ Stentorphone
8′ Gross Flute
8′ Gamba
8′ Gamba Celeste
8′ French Horn
8′ English Horn
8′ Saxophone
8′ Clarinet
8′ Orchestral Oboe
8′ Tuba
Harp
Chimes

ECHO
8′ Cor de Nuit
8′ Muted Viole
8′ Viole Celeste
4′ Zauberfloete
8′ Vox Humana
Tremolo

PEDAL
32′ Double Open Diapason
32′ Resultant
16′ Open Diapason
16′ Bourdon
16′ Violone (Gt)
16′ Lieblich Bourdon (Sw)
16′ Contra Viole (Ch)
16′ Echo Bourdon
8′ Principal
8′ Flute
8′ Cello
8′ Dulciana
4′ Flute
Compensating Mixture
32′ Bombarde
16′ Trombone
16′ Fagotto (Sw)
8′ Trumpet

Grauman’s Metropolitan Theatre
When Grauman’s Metropolitan Theatre was constructed at Sixth and Hill Streets in 1923, Tally’s Broadway Theatre must have looked rather dowdy in comparison. The Metropolitan, a monumental piece of architecture, was and remained the largest theater in Los Angeles and had a four-manual, 36-rank Wurlitzer Hope-Jones Unit Orchestra, Opus #543. This was the largest organ built by Wurlitzer at the time, beating out the celebrated Denver Auditorium organ by one rank. The 36 ranks of pipes were divided between two sections of the theater: 24 ranks in chambers located over the proscenium arch and 12 ranks in the Echo division at the rear of the balcony. Albert Hay Malotte, Gaylord Carter and Alexander Schreiner were Metropolitan organists at various times, accompanying films and presenting organ solos enhanced by lighting subtly changing color to match the mood of the music.
James Nuttall, who installed the organ, escorted a writer for the Los Angeles Times through the newly installed instrument and provided a description of its resources:
The tonal chambers, or swell boxes as they are technically termed, each measure 20 feet long and 11 feet wide, and are arranged above the proscenium arch. They are constructed in such a manner that they are practically sound proof, being built of nonporous inert material, with the interior finished in hard plaster. The front wall of each chamber facing the auditorium is left open and into this opening is fitted a mechanism built in the form of a large laminated Venetian blind. The opening and closing of the shutters in this Venetian blind produce unlimited dynamic tonal expression from the softest whisper to an almost overwhelming volume.
In the basement of the theatre is the blowing apparatus consisting of two Kinetic blowers connected directly to a twenty-five horsepower motor. Each of the blowers is capable of supplying 2500 cubic feet compressed air per minute. The compressed air is used to work the electro-pneumatic actions as well as to supply the various tone producers.
There are four manuals on the console, and the pedal board on which the bass notes are played with the feet. The stop keys number 236 and these are arranged above the keyboards on three tiers and are divided into departments of independent organs. The lowest manual is the accompaniment organ, the middle keyboard is the great organ and is so arranged so the echo organ may be played from this manual. The third manual is a bombarde organ and the top one is the solo organ.8

Although the advent of sound motion pictures silenced many of the organs in Los Angeles theaters, the Metropolitan organ was in use much longer due to the continuation of live stage shows well into the 1950s. In 1960 the theater was closed and by 1961 it had been demolished and the organ broken up for parts.

Poly-Technic High School
Poly-Technic High School was one of several high schools in the Los Angeles area to have a pipe organ. For their new auditorium, completed in 1924, the school ordered a four-manual organ from the Estey Organ Company. Decorated in the Spanish Renaissance style, the auditorium seated 1,800 and had a full working stage. The organ was installed in chambers located on either side of the proscenium, with the console in the orchestra pit.
The instrument had an automatic roll player in a separate cabinet and a console with Estey’s recent invention, the “luminous piston stop control.” These were lighted buttons placed in rows above the top manual of the console. When pushed, the button lit up signifying that that particular stop was on. Another push turned the stop off. This system presented all sorts of problems; it was inconvenient to use, the “luminous piston” was difficult to see under bright lights, it could give an organist a very nasty shock, and some organists could not resist spelling out naughty words with the lights.
The organ had a clear, pleasant sound in the auditorium’s good acoustics due possibly to Estey’s local representative Charles McQuigg, a former voicer of the Murray M. Harris Company, who installed and finished the instrument. Crowning the full organ was a reedless Tuba Mirabilis voiced on 15″ wind pressure, an invention of William Haskell of the Estey Company. The pipes looked like an open wood flute, but sounded like a stringy Horn Diapason. It was a rather convincing sound, until one knew the secret.
Classes in organ instruction were offered at Poly High, the instrument was used for recitals and public events held in the auditorium, and the roll player was used to play transcriptions of orchestral works for music education classes.
The organ eventually fell silent due to lack of use, lack of maintenance, and problems with the luminous pistons. When the auditorium was refurbished in 1979, the organ was removed so that the chamber openings could be used for stage lighting trees. It was sold, put into storage, and eventually broken up for parts.

Poly-Technic High School
Estey Organ Company, 1924, Opus 2225

GREAT
8′ Open Diapason I
8′ Open Diapason II
8′ Dulciana
8′ Gemshorn
8′ Gross Flute
8′ Melodia
4′ Flute Harmonic
8′ Tuba
Harp

SWELL
16′ Bourdon
8′ Open Diapason
8′ Salicional
8′ Viole d’Orchestre
8′ Viole Celeste
8′ Stopped Diapason
4′ Flauto Traverso
8′ Oboe (reedless)
8′ Cornopean
8′ Vox Humana
Tremolo
Chimes

CHOIR
8′ Violin Diapason
8′ Viol d’Amour
8′ Clarabella
8′ Unda Maris
4′ Flute d’Amour
8′ Clarinet (reedless)
Tremolo

SOLO
8′ Stentorphone
8′ Gross Gamba
8′ First Violins III
8′ Concert Flute
4′ Wald Flute
2′ Piccolo
8′ Orchestral Oboe
8′ Tuba Mirabilis (reedless)

PEDAL
32′ Resultant
16′ Open Diapason
16′ Bourdon
16′ Lieblich Gedackt (Sw)
8′ Bass Flute
8′ Tuba Mirabilis (Solo)

The Uplifter’s Club
One of a number of organs installed in Los Angeles’s private clubs was this instrument built by the Skinner Organ Company in 1924 for the Uplifter’s Club. Located in the remote Santa Monica Canyon section of Los Angeles, the club was formed in 1913 as a splinter group of the Los Angeles Athletic Club by a number of wealthy members, for “high jinx.”9 Recreational facilities were constructed in the canyon and some members built cabins and cottages to use for weekend retreats.
In 1923 construction on a large clubhouse began and in 1924 the three-manual Skinner organ was installed. The instrument was a large residence-style organ with many duplexed stops and a roll player mechanism. The organ provided music for the relaxation of members, music for skits and plays, and occasionally a local organist was invited in to play a recital of light selections.
During World War II the club began selling off its holdings, and by 1947, it had disbanded. The organ was sold to the First Methodist Church of Glendale, where it was treated to a number of indignities to make the instrument more suitable for church use, the result being at great odds with the original intent of the organ.

The Uplifter’s Club
Skinner Organ Company, 1924, Opus 449

MANUAL I
8′ Diapason
8′ Chimney Flute
8′ Gedackt
8′ Violoncello
8′ Voix Celestes II rks
8′ Flute Celestes II rks
4′ Orchestral Flute
4′ Unda Maris II rks
8′ Vox Humana
8′ French Horn
8′ Tuba
Tremolo
Harp
Celesta
Chimes
Kettle Drums

MANUAL II
8′ Chimney Flute
8′ Violoncello
4′ Orchestral Flute
8′ Corno d’Amore
8′ English Horn
8′ Vox Humana
8′ French Horn
8′ Tuba
Tremolo
Chimes
Kettle Drums

MANUAL III
8′ Diapason
8′ Voix Celestes II rks
8′ Flute Celestes II rks
8′ Gedackt
4′ Unda Maris II rks
Tremolo
Harp
Celesta
Piano (prepared)

PEDAL
16′ Bourdon
16′ Echo Lieblich
16′ Gedackt
8′ Still Gedackt
16′ Trombone (Tuba)

The Elks Club
Located just off the fashionable Wilshire Corridor facing Westlake Park was the Elks Club, a 12-story building constructed in 1926 to contain a lodge hall, dining rooms, lounges, swimming pool, tennis and racquetball courts, a full gymnasium, and residential facilities for members. Entering the building, one encountered a monumental reception hall some 50 feet in height, with a vaulted ceiling painted with scenes from mythology. A wide staircase rose dramatically to the Memorial Room that functioned as a lobby for the lodge room.
On the front page of the Van Nuys News for November 18, 1924 was an article announcing “H. P. Platt, manager of the Robert-Morton Organ Company, announces that his concern has been awarded a contract for constructing a huge pipe organ to be placed in the new Elks Temple of Los Angeles. Specifications for the huge organ will make it the largest unified orchestra pipe organ in the United States. The contract price was said to be $50,000.”
“Unified orchestra pipe organ” is probably the best description for the four-manual, 60-rank organ that the Robert-Morton firm installed in the Elks Club in 1926. The stops are divided into Great, Swell, Choir, Solo and Pedal divisions, but the contents of each are not what one would expect in either a concert or theatre organ.
The main organ is in four chambers, one in each corner of the lodge room, with Echo and Antiphonal divisions speaking through openings centered over the entrance doors. These two divisions were heard in either the lodge room or the Memorial Room by means of dual expression shades. A two-manual console in the Memorial Room played the Echo/Antiphonal divisions so an organist could entertain lodge members lingering in the Memorial area before a meeting without the sound penetrating into the lodge room.
Currently, the instrument is unplayable. The two-manual console has been disconnected and although the four-manual console remains in position, over half of the ivories are missing. Workmen stomping through the pipe chambers on various occasions have trod on many of the smaller pipes, a few sets are missing, and water leaks have damaged other portions of the organ.
Stepping back in time to happier days, we can read about the organ when it was the talk of organ-playing Los Angeles. In December, 1925, a Los Angeles newspaper reported “the new $50,000 organ for the Elk’s great temple will be given its official test before officers of the Elk’s Building Association tomorrow evening. The test recital will be at the plant of the Robert-Morton Organ Company, builders of the instrument. For the benefit of members of the lodge and the public, the recital will be broadcast over KNX radio between 7 and 7:30 o’clock. A half an hour of cathedral and concert music will be played on the huge instrument by Sibley Pease, official organist of the Elk’s lodge.”10
In May 1926, Warren Allen, organist of Stanford University, gave the opening recital, playing compositions by Bach, Boccherini, Saint-Saëns, Douglas, Wagner and ending with the Finale from Vierne’s Symphony No. 1. A reviewer noted that “the organ is an instrument of concert resources and full organ is almost overpowering in tone. It ranks as one of the finest in the city.”11
For many years the organ was used almost every day of the week for lodge meetings, concerts and radio broadcasts. Dwindling membership and the expense of upkeep on the huge Elks building caused the remaining members to find smaller quarters in the late 1960s. Left abandoned for a while, the building has seen use as a YMCA, a retirement center, and a seedy hotel; it is currently being rented for large social events and filming. Due to the extensive damage done to the organ and the great expense of a restoration, this is probably another large, once-popular instrument that will never play again.

Elks Temple, Los Angeles
Robert-Morton Organ Company, 1926

GREAT
16′ Open Diapason
16′ Gamba (TC)
8′ First Diapason
8′ Second Diapason
8′ Tuba
8′ French Horn
8′ Kinura
8′ Gross Flute
8′ Clarinet
8′ Doppel Flute
8′ Gamba
8′ Violin I
8′ Violin II
8′ Violin III
8′ Quintadena
8′ Dulciana
4′ Tuba Clarion
4′ Octave Diapason
4′ Doppel Flute
22⁄3′ Twelfth
2′ Fifteenth
III Cornet
Harp
Glockenspiel
Xylophone
Chimes
Strings F
Great 2nd Touch
8′ Tuba
8′ French Horn
8′ Gross Flute
8′ Gamba

SWELL
16′ Contra Fagotto
16′ Tibia Clausa
16′ Swell Bourdon
16′ Violin (TC)
8′ Trumpet
8′ Open Diapason
8′ Violin
8′ Tibia Mollis
8′ Tibia Clausa
8′ Gedackt
8′ Orchestral Oboe
8′ Vox Humana
8′ Violin I
8′ Violin II
8′ Violin III
8′ Viol d’Orchestre
8′ Viole Celeste
8′ Salicional
8′ Aeoline
4′ Octave Diapason
4′ Tibia Clausa
4′ Bourdon Flute
4′ Flauto Traverso
4′ Vox Humana
4′ Violina
4′ Salicet
22⁄3′ Bourdon Nazard
2′ Bourdon Piccolo
Harp
Glockenspiel
Xylophone
Chimes
Bird
Strings P
Strings MF
Swell 2nd Touch
16′ Fagotto
16′ Trumpet (TC)
16′ Bourdon
8′ Tibia Clausa
4′ Flauto Traverso

CHOIR
16′ Violin (TC)
16′ Double Dulciana
8′ English Diapason
8′ Flugel Horn
8′ Clarabella
8′ Clarinet
8′ Gemshorn
8′ Viola
8′ Violin I
8′ Violin II
8′ Violin III
8′ Dulciana
8′ Unda Maris
4′ Harmonic Flute
4′ Violina
4′ Dulcet
2′ Flageolet
2′ Dolcissimo
Snare Drum Tap
Snare Drum Roll
Tom-Tom
Castanets
Sleigh Bells
Wood Drum
Tambourine
Strings F
Choir 2nd Touch
8′ English Diapason
8′ Flugel Horn
8′ Clarabella
8′ Clarinet

SOLO
8′ Tuba Mirabilis
8′ Stentorphone
8′ Philomela
8′ Gross Gamba
8′ Oboe Horn
4′ Tuba Clarion
4′ Gambette
Chimes

ANTIPHONAL
8′ Trumpet
8′ Open Diapason
8′ Hohl Flute

ECHO
16′ Echo Bourdon
8′ Night Horn
8′ Flute Celeste
8′ Viol Sordino
8′ Vox Humana
4′ Fern Flute
4′ Violetta
Bird

PEDAL
32′ Resultant Bass
16′ Double Open Diapason
16′ Trombone
16′ Pedal Bourdon
16′ Swell Bourdon
16′ Echo Bourdon
16′ Contra Fagotto
16′ Violone
16′ Dulciana
8′ Open Diapason
8′ Tuba
8′ Pedal Flute
8′ Doppel Flute
8′ Echo Bourdon
8′ Cello
8′ Dulciana
4′ Tuba Clarion
4′ Dulcet
III Cornet

Pedal 2nd touch
Bass Drum
Snare Drum
Tympani
Bass Drum/Cymbal
Buttons Above Solo
Klaxon
Telephone
Cow Bell
Bird
Tremolos
Swell
Great
Choir
Solo
Antiphonal
Echo
Swell Vox Humana
Echo Vox Humana
Couplers
Pedal Octaves
Great to Pedal 8, 4
Swell to Pedal 8, 4
Choir to Pedal 8
Solo to Pedal 8
Swell to Swell 16, 4
Choir to Swell 16, 8, 4
Solo to Swell 16, 8, 4
Great to Great 16, 4
Swell to Great 16, 8, 4
Choir to Great 16, 8, 4
Solo to Great 16, 8, 4
Choir to Choir 16, 4
Swell to Choir 16, 8, 4
Solo to Solo 16, 4

Barker Brothers
Barker Brothers, the pre-eminent home furnishings store of Los Angeles, moved into a new building in 1927. Occupying all of 7th Street between Flower and Figueroa Streets, the 12-story façade was in Renaissance Revival style and loosely patterned after the Strozzi Palace in Florence. Entering through the main doors, the visitor stepped into a 40′ high lobby court furnished with leather sofas and chairs, oriental carpets, and a decorated vaulted ceiling.
During the 1920s, Barker Brothers served as the southern California representative for the Welte Organ Company. Their previous store had a Welte organ used to entertain customers, and when Barkers moved out, the instrument was rebuilt into two organs; the main section went, with a new console, to the Pasadena home of Baldwin M. Baldwin, and the Echo division, also provided with a new console, was packed off to Mrs. Belle Malloy in San Pedro.
Barker Brothers’ new store had three Welte organs. In the lobby court was a four-manual, 26-rank concert organ that was played daily for the store’s patrons. The four-manual drawknob console was centered along the east side of the lobby and the chamber openings high on the wall had gold display pipes. A three-manual, nine-rank theatre-style instrument was in a 600-seat auditorium on the 10th floor, and a two-manual, 10-rank organ with player attachment was installed in the interior design studio.
On the evening of March 28, 1927, the three Welte organs were dedicated, beginning with the instrument in the lobby court and then moving to the auditorium organ, where members of the Los Angeles Organists’ Club entertained. Guests were invited to hear the residence organ in the interior design department and enjoy the automatic roll player device.
Among the organists playing the lobby court organ on that evening were Albert Hay Malotte and Alexander Schreiner. Malotte played Gershwin’s Rhapsody in Blue and the quartet from Verdi’s Rigoletto, but Schreiner no doubt stole the show when he played the “Great” g-minor fugue of Bach and closed the program with Wagner’s Ride of the Valkyries.12
The lobby court organ was very popular with Los Angeles residents and the daily recitals were well attended. Welte designed the instrument for maximum flexibility; the Great and Choir shared stops, while the Swell and Solo were independent divisions, except for the Great Tuba Sonora that was available on the Solo at 16′, 8′ and 4′ pitches.
When the Welte Organ Company closed in 1931, the residence organ was sold to a home in the Brentwood section of the city. The auditorium instrument was eventually sold to the Presbyterian Church in La Canada, but the lobby court organ was kept in use until the early 1950s. After the Second World War, the daily organ recitals were popular with older folks who lived in affordable but respectable downtown residential hotels. The store management felt having pensioners strewn about the lobby lowered the tone of their upscale operation and removed the organ in 1955, selling the console to a private party and the pipe work to a local church.
There was a more insidious reason for removing the Welte organ. Barker Brothers had become the local agents for the new Hammond Chord Organ and didn’t want competition from the “real thing” while an employee was demonstrating the new electric device. The Los Angeles Times for May 12, 1955 announced: “A musical tradition at Barker Bros. has been broken! Barker Bros. pipe organ of some 30 odd years vintage is no longer the cornerstone of the store’s tradition. One fine day it was an impressive part of the main lobby and the next day, the massive monolith was a legend. A compact, sweet little number, modern in design and execution, has replaced the pipe organ. The Hammond Chord Organ now reigns supreme. A representative from Barker’s Piano Salon on the mezzanine floor is in daily attendance at his Chord Organ post.”

Barker Brothers Store
Lobby Court Organ
Welte Organ Company, 1927

GREAT
16′ Double Open Diapason
8′ Principal Diapason
8′ English Diapason
8′ Tibia Minor
8′ Claribel Flute
8′ Viola
4′ Octave
4′ Forest Flute
8′ Tuba Sonora
Harp
Celesta
Piano

SWELL
16′ Lieblich Gedackt
8′ Diapason Phonon
8′ Philomela
8′ Gedackt
8′ Violin II rks
8′ Solo Violin
8′ Salicional
8′ Vox Angelica
4′ Chimney Flute
22⁄3′ Nazard
2′ Flautino
13⁄5′ Tierce
16′ Contra Fagotto
8′ Trumpet
8′ Oboe Horn
8′ Vox Humana
4′ Octave Oboe
Tremolo
Vox Humana Vibrato
Harp
Celesta
Piano

CHOIR
16′ Contra Viol
8′ English Diapason
8′ Tibia Minor
8′ Claribel Flute
8′ Flute Celeste
8′ Viola
8′ Muted Violin
8′ Voix Celeste
8′ Viola
4′ Traverse Flute
2′ Piccolo
8′ Clarinet
Tremolo
Choir 2nd Touch
8′ Principal Diapason
8′ Tibia Minor
8′ Tuba Sonora
8′ Clarinet
Celesta
Chimes
Solo to Choir
Swell to Choir

SOLO
8′ Tibia Clausa
8′ Violoncello
4′ Harmonic Flute
16′ Tuba Profunda
8′ Tuba Sonora
8′ French Horn
8′ English Horn
4′ Cornet
Tremolo
Harp
Celesta
Chimes
Piano

PEDAL
32′ Acoustic Bass
16′ Diaphonic Diapason
16′ Bourdon
16′ Violone (Gt)
16′ Lieblich Gedackt (Sw)
8′ Octave
8′ Flute
8′ Cello (Gt)
8′ Gedackt (Sw)
16′ Tuba Profunda (Solo)
8′ Tuba Sonora (Solo)
4′ Cornet (Solo)
16′ Piano
8′ Piano
Chimes

Organ studios, residences,
theaters

During the 1920s, many American organ builders maintained organ studios in Los Angeles to provide prospective customers with a sample of their wares. The studio usually featured a residence-style organ, complete with automatic player, in a home-like setting. The Skinner Organ Company went so far as to install a residence organ in the home of their local representative, Stanley W. Williams.13 The Aeolian Company displayed their Opus 1740 in the George Birkel Music Company, where fine pianos and phonographs were also available. Wurlitzer had a studio in downtown Los Angeles and a second showroom in the posh Ambassador Hotel, where they installed a Style R16, three-manual, ten-rank residence organ. In an overstuffed room off the hotel’s main lobby, patrons of the hotel could relax and listen to organ music presented several times a day by a member of the Wurlitzer staff.
Residence organs were popular additions to many of the fine homes built in Los Angeles before the Depression hit. Members of the movie colony enjoyed organs in their homes, and the Robert-Morton Company built instruments for Thomas Ince, for Marion Davies’s immense beach house, and for Charlie Chaplin, who used the organ to compose most of the music for his films.
Aeolian had organs in the homes of Harold Lloyd, cowboy actor Dustin Farnum, and Francis Marion Thompson, in addition to instruments in the residences of radio pioneer Earle C. Anthony, oil baron Lee Phillips, department store mogul Arthur Letts, and Willits Hole, who had an Aeolian organ in the art gallery wing of his Fremont Place mansion.
The Estey Organ Company’s sole contribution to the film colony was a small four-rank unified organ in the Hollywood home of “Keystone Kop” Chester Conklin.
There were a number of Welte residence organs scattered around Los Angeles, including a two-manual instrument in the home of John Evans, a property later owned by actress Ann Sheridan and Liberace. The large Welte organ in Lynn Atkinson’s exquisite Louis XVI-style home was in a ballroom that opened onto terraced gardens. The exterior of the estate was used as the television home of the “Beverly Hillbillies,” although the then-current owner finally tossed out the production company because too many tourists were knocking on the front door wanting to meet Jed Clampett.
The largest residence organ in Los Angeles was in the 62-acre estate of Silsby Spalding. The Aeolian organ (Opus 1373) had three manuals, six divisions, a 32′ Open Diapason, and 67 ranks of pipes. It was installed in the Spalding’s large music room in 1919 and spoke through three tall arches faced with ornamental metal grilles.
Two very exclusive and elegant apartment buildings in Los Angeles each had a Robert-Morton organ in the living room of the largest apartment. “La Ronda” and the “Andalusia” were both located on Havenhurst Drive and built in the Spanish style with enclosed gardens and fountains surrounding the apartments. The organ in the Andalusia had four ranks of pipes, a roll playing mechanism plus xylophone, marimba, chimes, celesta, and a small toy counter. La Ronda’s Robert-Morton organ had five ranks of pipes, no roll player, and fewer percussion stops.
There were a number of secular organs that had been planned toward the end of the 1920s, but were never built, and one could argue that with several of the instruments, their early demise was a desirable thing.
During the 1920s, Charles Winder ran the Artcraft Organ Company, a small firm that built garden-variety organs for neighborhood churches throughout southern California. In 1926 Winder announced the formation of a new company, The Symphonaer Company, to build “symphony concert organs.” The announcement continued: “The Symphonaer Concert Organ is described as an instrument that reproduces the true symphony orchestra, giving the effect of every instrument used in the largest of symphony orchestras.” A $1,000,000 plant was to be built offering employment to 100 craftsmen. Joining the venture was the British concert organist Edwin Lemare, who would serve as director of music and specifications. Built alongside the factory would be Symphonaer Hall, a recital hall equipped with a large Symphonaer organ, where Lemare would give frequent recitals and broadcast the instrument over a local radio station.14 The enterprise died in the planning stages and the Artcraft Organ Company went broke in 1928.
Alexander Pantages ordered a five-manual Robert-Morton organ for his spectacular Hollywood Pantages Theatre that opened in 1930. Although the theater was and still is a success, the organ was never built due to the advent of sound films, an expensive lawsuit in which Pantages was involved, and the closing of the Robert-Morton Company. The four large organ chambers remain empty to this day.
The Hollywood Bowl, the world’s largest natural amphitheater, is used as a popular venue for summer concerts, accommodating audiences of up to 18,000. The Hollywood Bowl program for July, 1929, published a letter from the Bowl manager relating that organist Edwin Lemare was working to interest the Hollywood Bowl Association in installing an outdoor organ in the amphitheater. The letter went on to state that Lemare had prevailed on an organ builder to install an organ in the Bowl provided that $10,000 was spent to build enclosures for the instrument.15 Fortunately, the scheme never progressed past the planning stage.

Los Angeles Memorial Coliseum
In the late 1920s, the Welte Organ Company submitted a proposal to the Civic Bureau of Music and Art of Los Angeles to build a five-manual outdoor organ for the Los Angeles Memorial Coliseum.16 The Coliseum, opened in 1923, covers a total of 17 acres and originally seated 76,000. Although there is nothing in the proposal stating where the organ would be located in the huge stadium, concrete enclosures may have been planned in and around the Peristyle, a focal point along the east end of the huge structure.
The installation of an organ in the Coliseum would have been an even greater acoustical nightmare than an organ in the Hollywood Bowl. Among the features of the proposed specification was a fifth manual called “Orchestral” that was home to four separately enclosed divisions, Diapason, Brass, String and Woodwind, three of which had their own pedal sections. The console would have stopkeys placed on angled jambs and a remote combination action. Nothing ever came of the proposal, and the 1929 stock market crash and closing of the Welte Corporation in 1931 sealed the instrument’s fate.
The proposal reads:

The Welte Organ Company, Inc., hereby agrees to build for the Civic Bureau of Music and Art, Los Angeles, California; herein referred to as Purchaser, and to install in the Coliseum, Los Angeles, California—ONE WELTE PIPE ORGAN. Ready to use and in accordance with the following specifications, viz: Manuals, five, compass CC to C4, 61 notes; Pedals, compass CCC to G, 32 notes; the windchests of manuals affected by octave couplers to be extended one octave above the compass of the keyboard, to 73 notes. Electro-pneumatic action throughout. Philharmonic pitch A-440. Console type, concert; stop control, stopkeys and tablets. Combination action adjustable at the console, visibly affecting the registers. Remote control inside setter.

Los Angeles Coliseum

GREAT - Manual II
16′ Double Diapason
16′ Bourdon
8′ First Diapason
8′ Second Diapason
8′ Third Diapason
8′ Violoncello
8′ Double Flute
8′ Clarabella
51⁄3′ Quint
4′ First Octave
4′ Second Octave
4′ Third Octave
4′ Tibia Plena
4′ Harmonic Flute
31⁄5′ Tenth
22⁄3′ Twelfth
2′ Fifteenth
V Plein Jeu
V Cymbale
16′ Double Trumpet
8′ Tromba
4′ Clarion
8′ Grand Piano
4′ Grand Piano
Minor Chimes
Great 2nd Touch
Diapason Section
Brass Section
String Section
Woodwind Section
Solo to Great 8
Tower Chime
2′ Glockenspiel

SWELL - Manual III
16′ Quintaton
16′ Contra Viola
8′ Open Diapason
8′ Horn Diapason
8′ Viola da Gamba
8′ Salicional
8′ Voix Celeste
8′ Tibia Clausa
8′ Harmonic Flute
4′ Octave
4′ Geigen Principal
4′ Salicet II rks
4′ Flute Couverte
4′ Traverse Flute
31⁄5′ Tenth
22⁄3′ Twelfth
2′ Fifteenth
2′ Piccolo
VI Mixture
16′ Contra Posaune
8′ Cornopean
8′ Trumpet
8′ Oboe Horn
8′ Vox Humana II rks
4′ Clarion
8′ Grand Piano
4′ Grand Piano
Swell 2nd Touch
Diapason Section
Brass Section
String Section
Woodwind Section
Solo to Swell 8
Chimes
2′ Glockenspiel

CHOIR - Manual I
16′ Waldhorn
8′ Open Diapason
8′ Waldhorn
8′ Tibia Minor
8′ Viol d’Orchestre
8′ Violes Celestes II rks
8′ Claribel Flute
8′ Quintaphon
4′ Octave
4′ Wald Flute
4′ Violin
22⁄3′ Twelfth
2′ Fifteenth
2′ Flageolet
13⁄5′ Seventeenth
11⁄7′ Septieme
1′ Twenty-Second
16′ Contra Fagotto
8′ Clarinet
8′ Vox Humana II rks
4′ Clarion
Minor Chimes
2′ Glockenspiel
8′ Grand Piano
4′ Grand Piano
2′ Xylophone
Snare Drum, Tap
Snare Drum, Roll
Choir 2nd Touch
Diapason Section
Brass Section
String Section
Woodwind Section
Solo to Choir
Chimes
2′ Glockenspiel
Snare Drum, Roll
Triangle

SOLO - Manual IV
16′ Violone
8′ Diapason Magna
8′ Tibia Plena
8′ Solo Gamba
8′ Gamba Celestes II rks
8′ Harmonic Flute
4′ Octave
4′ Concert Flute
4′ Solo Violin
III Cornet
16′ Ophicleide
8′ Tuba Mirabilis
8′ Tuba Sonora
8′ Military Trumpet
8′ French Horn
8′ Orchestral Oboe
4′ Clarion

ORCHESTRAL - Manual V
Diapason Section
16′ Major Diapason
8′ Double Languid Diapason I
8′ Double Languid Diapason II
8′ Diapason Phonon
8′ Open Diapason
8′ Geigen Principal
4′ Double Languid Octave
4′ Octave
22⁄3′ Twelfth
2′ Fifteenth
11⁄3′ Nineteenth
1′ Twenty-Second
IX Grand Chorus
Diapason Section Pedal
16′ Diaphonic Diapason
16′ Diapason
102⁄3′ Quint
8′ Diapason Octave
8′ Octave
4′ Super Octave

Brass Section
16′ Trombone
16′ Serpent
8′ Tuba Magna
8′ Tuba Sonora
8′ Tuba Mirabilis
8′ French Trumpet
8′ Muted Trumpet
8′ Post Horn
8′ French Horn (closed tone)
8′ French Horn (open tone)
51⁄3′ Corno Quint
4′ Tuba Clarion
4′ Trumpet Clarion
22⁄3′ Corno Twelfth
2′ Cor Octave
Brass Section Pedal
32′ Contra Bombarde
16′ Bombarde
16′ Trombone
8′ Trumpet

String Section
16′ Contra Basso
16′ Violin Diapason
16′ Contra Viola
8′ Violin Diapason
8′ Violin Diapason Celeste
8′ Violoncello I
8′ Violoncello II
8′ Cello Celestes II rks
8′ Nazard Gamba
8′ Gamba Celeste
8′ First Violin
8′ Second Violin
8′ Third Violin
8′ Violin Celestes II rks
8′ First Viola
8′ Second Viola
8′ Viola Celestes II rks
8′ Muted Violins III rks
4′ String Octave
4′ Violins II rks
4′ Muted Violins III rks
2′ String Fifteenth
III Cornet des Violes
String Section Pedal
32′ String Diaphone
16′ Double Bass
16′ Violone
8′ Cello

Woodwind Section
16′ Bassoon
16′ Bass Saxophone
8′ First Saxophone
8′ Second Saxophone
4′ Soprano Saxophone
8′ English Horn
16′ Bass Clarinet
8′ Basset Horn
8′ First Clarinet
8′ Second Clarinet
8′ Orchestral Oboe
8′ Kinura
8′ Orchestral Flute
4′ Solo Flute
2′ Solo Piccolo

PEDAL
64′ Gravissima
32′ Diaphone
32′ Violone
16′ Diaphone
16′ Major Bass
16′ Diapason
16′ Violone
16′ Contra Basso (String)
16′ Tibia Clausa
16′ Wald Horn (Ch)
16′ Bourdon
16′ Contra Viola (String)
102⁄3′ Quint
8′ Diaphone
8′ Principal
8′ Octave
8′ Violoncello
8′ Wald Horn (Ch)
8′ Flute
51⁄3′ Octave Quint
4′ Super Octave
4′ Fifteenth
4′ Tibia Flute
V Harmonics
V Fourniture
32′ Contra Bombarde
16′ Bombarde
16′ Tuba Profunda
16′ Serpent (Brass)
16′ Ophicleide (Solo)
16′ Double Trumpet (Gt)
16′ Contra Posaune (Sw)
16′ Contra Fagotto (Ch)
8′ Bombarde
8′ Tuba Sonora
4′ Bombarde
4′ Cornet
16′ Grand Piano
8′ Grand Piano
Bass Drum, Stroke

Pedal 2nd Touch
64′ Gravissima
32′ Diaphone
32′ Contra Bombarde
Solo to Pedal 8
Solo to Pedal 4
Diapason Section 8
Diapason Section 4
Brass Section 8
Brass Section 4
Tower Chimes
Minor Chimes
Thunder Drum, Stroke
Thunder Drum, Roll
Kettle Drum, Roll
Chinese Gong
Persian Cymbal
Vibratos
Choir
Choir Vox Humana
Swell
Swell Vox Humana
Solo
Woodwind
String, Fast
String, Slow

Conclusion
The stories of these instruments testify to the near-ubiquity of the pipe organ early in the twentieth century, including its use in films and stage shows. Even film actors owned and played pipe organs, in a golden age that now survives only in recollections such as this.

 

 

A Brief for the Symphonic Organ (Part Two)

Part two of two

Jack M. Bethards
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II.

The balance of this article will explore some of the methods used by Schoenstein in designing symphonic organs.

Tonal Variety

In planning a symphonic organ, no tone color that might be useful is excluded from consideration, and if something new seems appropriate we will develop it. We see no problem in combining individual sounds from French, German, English and American traditions of different periods in one instrument. This may seem like a dangerous approach, and it is . . . for those who must follow only established rules. If, on the other hand, a designer has in mind a well-formed image of the tonal architecture and its end result, the freedom to include elements of rare beauty handed down to us by the great builders of the past can open new avenues of creativity. This approach is only successful when applied with the strictest of discipline. Anything that does not blend and pull its weight in the ensemble or serve in a variety of solo or accompaniment roles should not be included. Collecting multiple elements of different traditions in an attempt to combine two or more repertoire-specific instruments into one is usually disastrous. The once-popular procedure of building an organ with a German Great and Positiv and French Swell or adding a romantic Solo to a neo-classic design are ideas that have, fortunately, lost their appeal. The goal should be to create an ensemble that has integrity in its own right and is able to acquit itself musically in a number of different styles with such conviction that there is no need to claim “authenticity.”

An equally important rule of design is to avoid making an instrument any larger than necessary or practical. No organ should have more stops than it needs to get its musical job done. No organ should be so large that it becomes unseviceable or acoustically chokes on its own bulk. When too much organ is squeezed into too little space and/or spread hither and yon, maintenance and tuning problems are sure to result. An organ should be of adequate size to be considered symphonic, but that size is much smaller than one might think. The smallest organ we have made that can qualify is the 15-voice, 17-rank instrument in the chapel of the University of St. Thomas, Houston, Texas (see stoplist). Certainly 40 to 50 voices provide ample opportunity for design freedom and 60 to 70 voices are all that should be required even for very big buildings. An example of our approach in a large symphonic plan is at First Plymouth Congregational Church in Lincoln, Nebraska (see stoplist). Note that this instrument has 73 voices if the separate gallery organ is not included.

Our stoplists show how we combine various tone colors, but a few explanatory notes may be in order. When combining individual stops into groups, we think of them in these categories: first, traditional choruses of diapasons and reeds; second, stops of moderate power from all tonal families serving in both accompanimental (manual and pedal) and in solo roles; third, ethereal stops--the extremely soft and delicate tones of the flute, string or hybrid type; fourth, bass stops of exceptional depth and power; and fifth, heroic solo stops. Some stops, of course, can fit into more than one of these categories but the classification is useful in reviewing whether or not the organ has all of the tonal characteristics common to a good symphonic ensemble.

Since the diapason is unique to the organ and the tone most often used, we seek to provide several (with appropriate chorus development), each of distinct character, on organs of even modest size. They vary not only in scale, but in mouth width, slotting, etc. We like to include stops of the echo diapason class (dulcianas, salicionals, etc.) as well. During the organ reform movement, open flutes, particularly at 8’ pitch, were not in vogue. We tend to include more open than stopped flutes. Stops of genuine string tone have not been popular either. This is a sad omission and certainly an organ without them cannot be considered symphonic. We like to include a family of strings and celestes from very narrow to very broad scale, all with true string quality rather than the geigen principal type that served as string tone in neo-classic organs. We try to include at least one of each of the color reeds (Clarinet, Oboe, Vox Humana and, where possible, horns, and specialty stops such as the Orchestral Oboe) as well as a complete chorus of trumpet tone (in large schemes, those of both closed and open shallot type). To broaden both dynamic and color ranges, very soft flue stops (often of the hybrid, tapered types) and bold solo stops (usually of the trumpet or tromba class) are important. In small schemes these effects can be had with stops doing double duty through effective expression.

We have developed several new voices. Some of these are variations on long established styles such as our Celestiana, which is a very narrow scale, quarter-tapered hybrid of clear but very soft flute tone; the Cor Seraphique with its Vox Angelique celeste is a larger scale version. Our Corno Dolce and Flute Celeste are brighter renditions of the E. M. Skinner Flauto Dolce and Flute Celeste. We find this bright character more generally useful in smaller instruments. The Voix Sérénissime is a small scale string of extremely keen intonation but of soft volume. The Silver Flute is a narrow-mouth, non-harmonic version of our large Harmonic Flute. It may be thought of as a metal Claribel Flute. 

The Symphonic Flute is a new development, also called Bœhm Flute, incorporating many different pipe constructions throughout its compass to achieve an interesting effect found in the orchestra’s family of transverse flutes. The flute of the symphony orchestra is bright and reed-like in its lower register with a full, increasingly powerful and pure, bell-like treble. These tone qualities are carried downward to the alto, bass and contra-bass flutes and upward to the piccolo. The Symphonic Flute was realized after extensive studies with flute players and manufacturers, as well as a careful review of Bœhm’s treatise. The tonal character is achieved, as in real flutes, by maintaining nearly the same diameter from bass to treble. The diameter progresses unevenly to achieve particular effects, but it does not reach the half-way point until the 48th pipe. The pipes in the bass therefore are of string scale progressing through principal, moderate flute, a wide flute, to very wide flute at the top. Pipe construction is of five varieties: slotted; non-slotted; harmonic; double mouth harmonic; and double mouth, double harmonic. This new solo color for the organ is both powerful and beautiful.

We employ high wind pressure for beauty, precision, or smoothness of tone where it is required. Solo flutes and strings and all closed shallot chorus reeds certainly have benefited from this treatment. Loudness can be achieved by other means, but carrying power without harshness is most perfectly achieved through heavy pressure.

A final note on tone is perhaps the most important point in this essay: Beauty of tone trumps all else in organ design. Beauty is perhaps too simple a term. Organ stops of great character can be quite bold and assertive, colorful and mysterious, languid and wistful. They are all forms of beauty to my ear. The secret is committed voicing. By that I mean making tone that has something to say, not simply playing it safe with blandness. Anyone who studies organ tone knows what I mean. Great voicing imparts something extra to energize a tone and make it appealing. A single diapason of beautiful quality will outplay a 100-rank organ that is all bluster and blandness. An organ may look symphonic on paper, but if the character of tone is not beautiful, it cannot qualify. An organ of any type with beautiful tone will surpass a poor symphonic one. However, if beauty of tone can be combined with all of the flexibility promised in the symphonic ideal, the result can be sublime.

Balance

To achieve balance there must be a center of gravity and in the symphonic organ it is at 8’ in the manuals. Each division should lay its foundation at the 8’ level. This, after all, is where the music is written. In our symphonic concept, upperwork is considered a coloring agent, a way of adding a distinctive character to the 8’ line. Therefore, in chorus design, as a general rule, scales decrease as pitch levels increase. Where we have the luxury of two mixture stops in a division, we vary them in color and dynamic rather than pitch: for example, one at mf and another at ff or one with a tierce and one without. Sometimes the mixture is enclosed separately. We avoid flutiness and overemphasis of off-unison pitches in upperwork; pure, clear diapason tone is the goal. Most 8’ stops, particularly those that must blend with related upperwork, have high harmonic content, a satisfying brilliance in their own right. Eight-foot stops are also regulated in a treble-ascendant fashion to emphasize the melody line; pipes become progressively slightly louder as they ascend the compass from the middle of the keyboard.

Horizontal balance is equally important and we believe that all of the manual divisions should be of adequate power to balance one another; the Swell and Great approximately equal and the Choir only slightly below. Reeds and flues should be equally balanced, but in certain acoustical situations the reeds should dominate. In dealing with chambers or in rooms of dry acoustic, open flute, string, and chorus reed tone are far more effective in producing tone of noble and powerful character than is diapason upperwork.

Clarity

One only has to see the density of a Reger, Widor, or Elgar score to realize that clarity is vitally important in romantic and modern music--as much as in early music. Many organs just present great blocks of sound. This may be titillating, but it is not music making. The notes must be heard if the intent is to be expressed. Most of the burden for clarity rests on the organist, who must judge his instrument and his acoustic; but the organ must not stand in his way. Clarity is achieved in an organ by many means including steady wind, precise action, voicing for prompt, clean attack and clear tone that is steady and free of irritating chiff, wild harmonics, and white noise.

Enclosure

There are vital qualities of freshness and presence associated with unenclosed pipework, but we believe that having pipes unenclosed is a luxury that can only be afforded in a scheme that also has a full range of resources, including Pedal stops, enclosed in at least two boxes. In smaller jobs the entire organ should be under expression, although sometimes circumstances dictate otherwise, for example where the Great must be placed forward of the Swell. In very large jobs it is good to have tones of similar character enclosed and unenclosed so that each class of tone can be used in its full range of expressive beauty. The best enclosure is masonry. Hollow brick faced with cement is the preferred construction and this points out the advantage of organ chambers in some situations. If an organ is primarily used for accompaniment where dynamic control and atmospheric, ethereal effects are of utmost importance, a properly designed and located chamber is ideal. An enchambered organ is as different from an encased free-standing one as a piano is from a harpsichord. Each has its advantages and each must be designed differently. The enchambered organ requires a stoplist emphasizing stops scaled and voiced for exceptional projection and carrying power, higher wind pressure, and a layout taking maximum advantage of the opening and preventing echoes within the chamber. In recent years chambers have been thoughtlessly despised. It is time to recognize their value as a means of increasing the range of musical options offered by the organ.

Dynamic Control

The symphonic organ must provide the organist with three distinct types of dynamic control: continuous, discrete-terraced, and sudden. These are all qualities common to the symphony orchestra, but often illusive on the organ. The continuous dynamic is achieved on the organ only through the use of the expression box and shades. A good expression box when fully open should not rob the pipes of clear projection and presence to any great degree, but when closed should reduce loudness from at least ff to p. To achieve this, a box must be reasonably sound proof with adequate density to control leakage of bass and must be well sealed when closed: Gaps are anathema to good expression box control. The shades cannot be too thick because their bulk will not permit a full use of the opening. Shades should be able to open 90 degrees. They must be fast acting and silent. Achieving smooth, continuous expression control is one of the greatest challenges in organ building.

To achieve a continuous dynamic range from fff to ppp we have developed a system of double expression, placing a box within a box. (See drawing.) The inner box is placed at the rear of the outer (main) box so that there is a large air space between the two sets of shades. When both sets of shades are closed, the space contained between them provides a very effective sound trap. We place the softest and most powerful sounds inside the inner box of the division. For example, a pair of ethereal strings and the Vox Humana; the high pressure chorus reeds and a mixture. A balanced expression pedal is provided at the console for each box. On large instruments a switching system allows the organist to select conveniently which shades are to be assigned to each balanced pedal. With the shades not quite fully open, the stops within the inner box are at a normal volume level to balance the rest of the division. With both sets of shades fully closed the soft stops in the inner box are reduced to near inaudibility and the chorus reeds are reduced to the level of color reeds. With all shades fully open, the chorus reeds and mixture are slightly louder than those of the Great. The Vox Humana usually has its own shades with a console switch to shift from pp to mf. There are many expressive possibilities with this system. For example, a crescendo may be started using the ethereal strings with both boxes closed, opening the inner box until the level is equal to the soft stops in the outer box, which are then added. The outer box is opened, adding stops in the normal manner while closing the inner box. The chorus reeds and mixture are drawn and the inner box reopened to complete the crescendo. This is done with ease after a bit of practice. During the installation of our organ in Washington, D.C. at St. Paul’s Church, music director Jeffrey Smith accompanied the Anglican choral service with nothing more than the Swell organ for over a month. It was the double box arrangement that made this possible.

The discrete-terraced dynamic requires having an adequate number of stops of similar or related tonal quality at different dynamic levels so that increased power is achieved in increments by adding stops. This effect is realized by hand registration, pistons, or a well-arranged crescendo pedal.

The third character of dynamic--sudden change--is usually done with manual shifts, second touch, very fast-acting expression shades, or a silent, fast and uniform stop action controlled by either the combination action or the Crescendo pedal and backed up by a steady, responsive wind system. Without this, a symphonic approach to organ playing is impossible. Clattery mechanism is annoying under any circumstances but especially so when sudden changes are required in the midst of a phrase, for example, to underscore an anthem or hymn text. We have introduced a device that adds another means of accent: the Sforzando coupler. It is a simple device wherein a coupler, for example Solo to Great, is made available through a momentary-touch toe lever. A fff combination can be set on the Solo and added to a ff combination on the Great at a climactic point with a brief touch of the toe to create a sforzando effect.

Wind System

There has been much discussion in recent decades about the virtue of flexible or “living” wind. If the wind supply were under the direct control of the player to be manipulated at will, there might be some point to argue. Since it is not, unsteady wind has no place in the symphonic organ. The whole point of the symphonic approach is to seek absolute control by the organist of all resources. So-called flexible wind is set in motion according to the design of the system and the demands being placed upon it. The organist can strive to achieve a reasonably pleasant effect, but he cannot have full control over the result. We believe in providing absolutely steady wind using a multiplicity of regulators, not only to make available different wind pressures, but to assure consistent response from all pipes under all playing conditions. Most chests are fed by at least two steps of regulation, each with spring control, so that the final regulator in the system does not have too much differential for which to compensate. A moving bass line should not upset the treble; intervals and chords should not de-tune when wind demand is high. It’s also important for the wind system to have more than adequate capacity to handle any demand and to have quick refill response so that staccato tutti chords will sound firm and full as they do in the orchestra. All too often, organs with great nobility of sustained tone turn into gasping caricatures when the forward motion of the music goes beyond their limits.

Another important wind system effect is a beautiful vibrato. We have developed a Variable Tremulant device, which allows the organist to control the speed of the beat from a balanced pedal at the console. We employ this normally on solo stops such as our Symphonic Flute. The normal, completely metronomic tremulant of the organ seems a bit unnatural when applied to lyrical passages. The Variable Tremulant allows the organist to simulate the more subtle vibrato used by first class instrumentalists and singers. The Vox Humana is also provided with a slow/fast tremulant switch, to fit both general and French Romantic repertoire.

Action

Speed and precision of both key and stop action are critical to the success of a symphonic organ. Key action must be lightning fast on both attack and release and respond uniformly from all keys regardless of the number of stops or couplers employed. Stop action must be fast and clean, i.e., without any hesitation or gulping on draw or release. Again, the entire action system must be silent. To meet these requirements we use electric-pneumatic action with an individual-valve windchest. (See illustration.) The expansion cell provides a cushioning effect similar to that of a note channel in a slider chest. It also allows placement of all action components near one another on the bottom board to reduce action channeling and increase speed.

The most important musical advantage of individual valves is to eliminate interdependence of pipes. With the exception of mixtures, where all pipes of a given note always speak together, we consider it a serious musical defect to place pipes on a common channel where the wind characteristics are different depending on the number of stops drawn and where there is a possibility of negative interaction within the channel. This is especially true, of course, with combinations of reeds and flues on the same channel and/or several large stops using copious wind. Each pipe should produce the same sound each time it is played no matter how many others are combined with it. As with flexible wind, the organist loses a degree of control over his instrument if random changes in pipe response can occur.

The most important reason for absolute uniformity of chest response under all conditions is the fact that pipes do not have the flexibility to adjust for variations in attack, wind supply, and release as do other wind instruments. A trumpet player, for example, can adjust attack, tone color, and release to an amazing degree of subtlety through precisely coordinated changes in breath, diaphragm, throat and mouth shape, tongue motion and position, embouchure, mouthpiece pressure, etc. In an organ, all of the analogous elements of control are set in place permanently by the voicer with the sole exceptions of wind regulator (diaphragm) and pipe valve (tongue motion). The pipe cannot change to accommodate variations in valve action and wind supply. As described before, wind supply cannot be controlled by the organist. This leaves the valve as the only means of control—and that control is limited even on the best mechanical actions. I submit that this element of control is actually a negative because variations in valve action, being different from the one experienced by the voicer, will be more likely to degrade pipe speech than to enhance it. If the key touch can affect attack and release but not all the other elements of tone production, then it follows that the organist is placed in the position of devoting his thought and energy toward avoiding ugly effects instead of concentrating on elements of performance that can be under precise and complete control. By maintaining absolute uniformity the performer knows what will happen every time a pipe is played.

Rather than searching for the elusive quality of touch control on the organ, we believe it is best to enhance speed of response and accuracy. The best way for an artist to achieve lyrical phrasing, clear articulation, and accent is through absolute control of timing. This is facilitated by keyboards with an articulated touch, providing a definite feel of the electric contact point, and an action that is immediately responsive both on attack and release. A sensitive player can then realize the most intricate and subtle musical ideas on what is essentially a large machine. The more the mechanism gets in the way of performance, forcing certain techniques, the less artistic freedom one has and the further the organ strays from the mainstream of instrumental and vocal music.

Flexible Control

We seldom acknowledge that the organist assumes the roles of orchestrator, conductor and instrumentalist—a daunting task to say the least. In effect, he is given nothing more than the kind of three-stave sketch that a composer might give to an orchestrator. The decisions an organist must make about registration are directly analogous to the orchestrator deciding on instrumentation, doubling, voice leading, chordal balance, etc. Since the organ is really a collection of instruments, the organist also has the conductor’s job of balancing the dynamic levels of individual sounds, accompaniments, inner voices of ensembles, counter melodies, and so on. As an instrumentalist he must have virtuoso keyboard technique. To achieve all of this requires great flexibility of control. The temptation is to load the console with a bristling array of playing aids. However, it is easy to pass the point where complexity becomes self-defeating. Here are some of the guidelines we use in designing consoles. First, the console must be comfortable. Dimensions should be standard and then, as far as possible, adjustable to conform to different organists. In addition to the adjustable bench, we have on several occasions provided adjustable-height pedalboards. We use a radiating and concave pedalboard and also non-inclined manual keys on the theory that when changing from one keyboard to another it is important that they be uniform. Controls must be placed in positions that are easy to see, memorize and reach. The combination action should be as flexible as possible providing the organist the opportunity to assign groups of stops to a piston at will. For example, on our combination action with the Range feature the organist can, while seated at the console, change divisional pistons into generals and vice-versa, assign pedal stops to a manual division, rearrange reversibles, etc. Multiple memories, of course, are now standard and of great value.

In addition to the multiple, assignable expression boxes, Variable Tremulant, and Sforzando coupler mentioned elsewhere, we like to include three special Pedal accessories on larger instruments. The first is a coupler bringing the Pedal to the Choir to facilitate fast pedal passages in transcriptions of orchestral accompaniments. The second is a Pedal Divide which silences the Pedal couplers in the low notes and silences the pedal stops in the upper notes. This allows the simultaneous playing of bass and solo lines on the pedalboard. The third is Pizzicato Bass, with a momentary-touch relay activating pipes of the Pedal Double Open Wood at 8¢ pitch. This provides a clear, pointed attack to the bass line reminiscent of divisi arco/pizzicato double bass writing for orchestra. This effect has been very useful in articulating bass lines, which on the organ are otherwise clouded rhythmically. The octave note is hardly noticeable, but the increase in buoyancy of the pedal line is quite amazing.

The most valuable and perhaps most controversial flexibility device is unification (extension). Certainly nothing other than tracker action has caused more argument over the last 50 years. The individual valve system obviously makes unification both simple and economical. Unification offers several musical advantages as we will see, but there are great dangers as well and it is most unfortunate that it has been so misused that some cannot see any of its advantages. We employ unification in symphonic organs, large and small, wherever a positive musical advantage can be achieved. Unification is, after all, merely coupling of individual stops rather than entire divisions. Whereas coupling is generally accepted, unification is not despite the fact that coupling of individual stops can offer a far more artistic result.

Perhaps the most interesting use of the unification is in creating new sounds. For example, to produce the stunning orchestral effect of trombones, tenor tubas, or horns playing in unison, we developed the Tuben (III) stop. This converts a chorus of 16’, 8’, 4’ tubas or trumpets into a unison ensemble by bringing the 4’ stop down an octave, the 16’ stop up an octave, and combining these with the 8’ stop. The three tones of slightly different scale but similar character create a most appealing unison effect and can be further combined with other stops of similar color at 8’ pitch. We have done the same with 16’, 8’ and 4’ Clarinet stops creating unison ensemble Clarinet tone, a common orchestrator’s device and most valuable to the organist for accompaniment and improvisation.

A traditional use of unification is in pedal borrowing from the manuals. We use this device extensively based on observation that one of the most difficult tasks facing an organist is finding a bass of suitable volume and color. We sometimes also borrow stops from one manual to another so that a stop may be used without tying up another manual with a coupler. A common application is transferring the Choir Clarinet to the Great so that it may be played against the Choir mutations. In some cases we derive an entire third manual on a moderate size organ from stops of the Great and Swell. This manual may either contain solo stops selected from both of the other manuals or a combination of solo stops from one manual and a secondary chorus from the other. A recent example is at Spring Valley United Methodist Church, Dallas, Texas. We occasionally extend stops—commonly downward to 16’ in the manuals and occasionally upward. Stops so treated must not be considered substitutes for primary chorus material. In other words, the organ must stand on its own as a completely straight design before any unification is employed. Stops extended upward must have a character of tone such that if a straight stop were to be employed, the scale would be the same or nearly so. Thus, extensions of string stops are much more likely to be successful than extensions of diapason stops.

Unification should not replace the ensemble of straight voices; it should simply make them available in different ways. If a stop can be useful also in another place or at another pitch and if this does not compromise the integrity of the organ’s design then we believe it is wrong not to include the unification. Failure to do so limits the organist’s musical options. The real point of the straight organ design concept is having all of the necessary independent voices even if one must give up some attractive ones to assure good ensemble. Once this is achieved, there is nothing wrong with making the voices you have do double or triple duty. It is interesting to note that in organs of a century ago a solo stop might be contrived through the use of couplers. A stop name would appear on a combination piston, the function of which was to draw a stop, a unison-off coupler, and an octave coupler thus making a 16’ reed, for example, available at 8’ as a solo stop. One can conclude that the earlier builders were not against unification, they simply did not have the practical means to do it. Unification and other devices to enhance flexibility need not be used by organists who do not like them, but to leave them out of the specification is to deprive others the full use of the costly resources the organ offers. Players of other instruments are always searching for ease of control so that their energy can be concentrated on musicianship. Organists might be a happier lot by doing the same instead of idolizing the organ’s ancient limitations.

Conclusion

We may be entering the greatest era in the fascinating life of the organ. The improvement in substitute electronic instruments has released the organ industry from the burden of making cheap pipe organs for customers with low expectations. Builders are working more and more for those with cultivated taste who appreciate an artistic approach to the craft. Organs are seldom purchased as a piece of church equipment as they were in days past. Now there is a place for all types of high quality pipe organs from antique reproductions to historically informed eclectic schemes to modern symphonic instruments. If the organ is to progress musically, it will be through the further development of its expressive—symphonic—qualities and the realization that the organ is a wind instrument ensemble with great potential, not merely a sometimes-awkward member of the early keyboard family.

Reprinted with permission from the Journal of The British Institute of Organ Studies, Vol. 26, 2002. Peter Williams, chairman; Nigel Browne and Alastair Johnston, editors. Positif Press, Oxford.

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Schoenstein & Co., San Francisco, California
TMI – The Episcopal School of Texas, San Antonio, Texas

The Anatomy of an Installation
The installation of a new organ is a time of mystery for many clients. Although we have provided much information and site preparation details, when the delivery day actually arrives there is usually surprise expressed at the giant pile of material that now fills their entire church. Once the unloading is completed, the next question is “How will we have worship on Sunday with all of this stuff in the way?” I answer, “Most of it will be in by the weekend!,” but they seldom believe me. As Sunday approaches and church members begin to see the pews and floor revealed once more, the easy-to-see progress of installing large components causes a contradictory view: church members now believe the new organ will completed very soon, since the assembly has been so swift. After realizing that the intricate work of winding, wiring, and tonal finishing is yet to be completed, they eagerly wait to hear the first sounds of their new instrument.
The straightforward nature of the installation at the TMI Chapel is a perfect venue to demonstrate the process of an organ installation. From the main floor of the chapel that was cleared for the arrival of the organ parts through the completion of the organ, these pictures will walk you through the day-by-day process of installing a pipe organ.
Louis Patterson
Vice President and
Plant Superintendent

Photo credit: Louis Patterson

Duty, Honor, Country
The TMI Legacy

Taking part in building an organ for General Douglas MacArthur’s Alma Mater had a special meaning for me. To those of us on the West Coast, the war in the Pacific seemed to be very close to home. Even as a small boy, I remember the pervasive talk of possible attack. Submarines were sighted, gas masks issued, blackouts ordered—all both fascinating and frightening. Spirits were lifted with constant talk of victory. I remember even cutting out a paper “V” for our Christmas tree! All hopes were pinned on our hero of the Pacific, General of the Army, Douglas MacArthur. The General always gave credit for both his career and his faith to the classical education, discipline, and daily chapel services of The Texas Military Institute, which he entered in 1893 at age 13.
The General did bring us victory and then served through the occupation and again in Korea with brilliance and dedication. In 1951, when he returned home, I remember going with my mother to the City and joining my father to watch from his office window as MacArthur came up California Street in a huge Packard touring car amid what was the most spectacular ticker tape parade in San Francisco history. He represented the forces under his command who saved us. At the time it was an exciting event. In memory, it is very moving.
Most of us know of MacArthur’s famous “Duty, Honor, Country” and “Old Soldiers” speeches, but I would like to quote from the first radio speech given right after V-J Day, for it is especially appropriate as we dedicate this organ to his memory, with the hope that its music will help in forming a foundation of faith for future leaders.
Today the guns are silent. A great tragedy has ended. A great victory has been won. . . . The entire world is quietly at
peace. . . Man since the beginning of time has sought peace, (but) military alliances, balances of power, leagues of nations, all in turn failed, leaving the only path to be by way of the crucible of war. . . . If we do not now devise some greater and more equitable system, Armageddon will be at our door. The problem basically is theological and involves a spiritual recrudescence and improvement of human character that will synchronize with our almost matchless advances in science, art, literature and all material and cultural developments of the past two thousand years. It must be of the spirit if we are to save the flesh.

Tonal Design Notes
The TMI tonal design contains all of the elements that we feel are absolutely necessary in a moderate-sized church organ—an instrument affordable by the average church that is serious about its music. I hasten to point out that this is not a symphonic organ—and purposely so. The dynamic and color range of a symphonic organ is a marvelous advantage, especially for intricate or transcribed accompaniments, large-scale Romantic repertoire, orchestral transcriptions, and improvisations. However, for many music programs a more traditional approach is not only fully adequate, but preferred. This stoplist is based on a survey of TMI’s specific musical requirements, which match those of many mainline churches.
Here are the 10 design points that, in our system, must be represented in a church organ of this size:
1. Great and Swell equally balanced in power, with the two primary elements of tonal power, diapason and trumpet, disposed opposite one another for contrast. Usually diapason tone is dominant in the Great, trumpet tone under expression in the Swell.
2. Variety of diapason tone. Although not dominant, diapason tone must not be overlooked in the Swell. In this organ, the Swell Horn Diapason is distinctly different from the Great Open, being of narrow mouth and slotted construction. This organ has the luxury of an independent Pedal Open Diapason as well. The Great includes a chorus of 4′ Principal, 2′ Fifteenth and 11⁄3′ Mixture, all under expression. The complementary upperwork for the Swell Horn Diapason is the 4′ Gemshorn, which is a mildly tapered principal, extended 12 pipes to form a Fifteenth.
3. Variety of reed tone. In addition to a conical chorus stop (trumpet), a double taper color stop (oboe) and a cylindrical color stop (clarinet) should be included to provide the three major reed qualities most often needed in church work.
4. True string and celeste tone. Genuine strings scaled narrow enough to give a “rosin on the bow” effect are a vital and often neglected element of tonal contrast to the wider-scaled diapasons and flutes.
5. A contrasting ethereal voice with celeste. In this case we selected our very strongly tapered Corno Dolce, which is a hybrid stop in that mysterious tonal ground between flute and string. Maximum use is assured when these stops are placed opposite the strings in an expressive Great.
6. Stopped and semi-open flutes of contrasting tone. This organ has a stopped metal flute, a stopped wood flute, and a very narrow-scaled chimney flute that is much like the traditional German and English Lieblich Gedeckts.
7. An open flute of solo quality. A moderate-scale Harmonic Flute was chosen; being in a prominent position outside the expression box, it is capable of balancing with full accompaniments and can stand up to the Trumpet.
8. A robust Pedal with 16′ stops from each major tonal family. This organ includes a large-scale open stop of wood, a small-scale open stop of metal, a stopped wood flute, and a full-length trumpet.
9. Independent expression for the Swell and Great, with only major foundational and solo stops unexpressive. Unenclosed stops on a small organ are a luxury.
10. Full coupling and careful use of unification. These devices are to be used with discretion by the organist to increase musical flexibility. This organ includes a Great to Swell coupler so that all enclosed stops may be played against the future unenclosed, high pressure Grand Trumpet.
—Jack M. Bethards

TMI – The Episcopal School of Texas
San Antonio, Texas
Two manuals and pedal
18 voices, 20 ranks
Electric-pneumatic action

GREAT (expressive – 4″ wind)
16′ Corno Dolce 12 pipes
8′ Open Diapason† 61 pipes
8′ Harmonic Flute† 61 pipes
8′ Gedeckt 61 pipes
8′ Corno Dolce 61 pipes
8′ Flute Celeste (TC) 49 pipes
4′ Principal 61 pipes
4′ Gedeckt 12 pipes
4′ Corno Dolce 12 pipes
2′ Fifteenth 61 pipes
11⁄3′ Mixture (II–III) 145 pipes
8′ Clarinet 61 pipes
Tremulant
Great Unison Off (enclosed stops only)
8′ Grand Trumpet (prepared)
†In Display

SWELL (expressive – 4″ wind)
16′ Bourdon 12 pipes
8′ Horn Diapason 61 pipes
8′ Stopped Diapason 61 pipes
8′ Echo Gamba 61 pipes
8′ Vox Celeste (TC) 49 pipes
4′ Gemshorn 61 pipes
4′ Chimney Flute 61 pipes
22⁄3′ Nazard (from Chimney Flute)
2′ Fifteenth (ext. Gems) 12 pipes
16′ Bass Trumpet 12 pipes
8’ Trumpet 61 pipes
8′ Oboe Horn 61 pipes
Tremulant
Swell 16′
Swell Unison Off
Swell 4′
8′ Grand Trumpet (prepared)

PEDAL (4″ wind)
16′ Open Diapason (Wood)† 12 pipes
16′ Corno Dolce (Great)
16′ Bourdon (Swell)
8′ Principal (Metal)† 32 pipes
8′ Diapason (Swell)
8′ Flute (Great)
8′ Stopped Diapason (Swell)
8′ Corno Dolce (Great)
4′ Fifteenth† 12 pipes
4′ Flute (Great)
16′ Bass Trumpet (Swell)
8′ Trumpet (Swell)
4′ Clarinet (Great)
†In Display

Couplers
Great to Pedal
Great to Pedal 4′
Swell to Pedal
Swell to Pedal 4′
Swell to Great 16′
Swell to Great
Swell to Great 4′
Great to Swell (enclosed stops only)

Mechanicals
Solid State Capture Action with:
100 memories
38 pistons and toe studs
6 reversibles
Record/Playback
Transposer
Sequencer
2 Expression pedals

A Caledonian Odyssey: Historical Keyboard Instruments in Scotland

Sarah Mahler Hughes

Sarah Mahler Hughes is Professor of Music, Organist of the College, and Chair of the Music Department at Ripon College, where she has taught since 1989. In July 2002 she appeared as a guest recitalist at the XVI Festival Internazionale Storici Organi della Valsesia in Campertogno (Piedmont), Italy. A special scholarly/artistic grant enabled her to examine and play a number of historic organs in Germany, including the 1687 Schnitger organ at the church of St. Peter and Paul in Cappel. In July 2004 she examined and played historic keyboard instruments in the Russell Collection at the University of Edinburgh, Scotland and in other cities.

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A recent holiday in Scotland provided many opportunities to see and play organs and other historical instruments in addition to being a tourist in this beautiful country. My children and I spent two weeks visiting friends in St. Madoes. Using this village between Perth and Dundee as our home base, we toured much of the country and experienced Scottish history and hospitality firsthand. The trip was made possible in part by a scholarly/artistic grant from Ripon College.

Our first stop was Edinburgh. En route to the Castle we wandered into St. Giles' Cathedral, where John Knox initiated the Scottish Reformation in 1560. The Chancel Choir of the First United Methodist Church of Lubbock, Texas, was rehearsing in preparation for a lunchtime concert, and I heard Mozart's Ave Verum Corpus accompanied on the beautiful 1992 Rieger. The organ is one of the instruments featured on the 2-CD set, Twelve Organs of Edinburgh.1

The next organ I saw, and the first one I played, was in Old Saint Paul's [Scottish Episcopal] Church in Edinburgh. Built by Henry "Father" Willis in 1888 and subsequently refurbished in 1905, 1936, 1960, 1968 and most recently, by Nicholson's of Worcester in 1977, the specifications are as follows:

Great

16' Dulciana

8' Open Diapason I

8' Open Diapason II

8' Stopped Flute

8' Dulciana

4' Principal

4' Spindle Flute

22/3' Twelfth

2' Fifteenth

III–IV Mixture

8' Trumpet

Swell

8' Open Diapason

8' Lieblich Gedackt

8' Salicional

8' Celeste (TC)

4' Gemshorn

III–IVMixture

16' Contra Oboe

8' Cornopean

Tremulant

Pedal

32' Subbass (derived)

16' Open Diapason (wood)

16' Bourdon

16' Dulciana (Great)

8' Octave (ext)

8' Bass Flute (ext)

8' Dulciana (ext)

4' Super Octave (ext)

4' Octave Flute (ext)

4' Dulcet (ext)

16’            Trombone (ext Trumpet)

8' Trumpet (Great)

The organ has a rich, warm sound eminently suitable for both service accompaniment and solo organ repertoire. A sample of the former may be heard on the CD Hearts & Voices, Hymns sung by the Choir of Old Saint Paul's Church.2

The following day I was privileged to spend several hours playing instruments in the Russell Collection of Early Keyboard Instruments in St. Cecilia's Hall at the University of Edinburgh. John Kitchen, Senior Lecturer and College Organist, was my tour guide as we worked our way through two rooms of virginals, spinets, and harpsichords from the 16th to 19th centuries.3 There were also three organs in the collection, and this seems the most appropriate place to mention them.

The first is an enharmonic chamber organ built by Thomas Parker in 1765. Parker was a pupil of Richard Bridge, a London builder favored by Handel.4 Bridge himself was supposedly trained by Renatus Harris. The  instrument has one manual with the usual short octave at the bottom. The real curiosity is a set of levers, two on each side of the case above the keyboard, that allow the player to select accidentals: Ab or G# and Bb or A# on the left-hand side, Db or C# and Eb or D# on the right. Parker provided a set of pipes for each pitch and the organ case is correspondingly wider than that of the usual chamber organ. What a fascinating way to learn firsthand about mean-tone tuning! It's also interesting to imagine how a player would handle a chromatic piece—assistants might be required to change the levers during a performance. The four registers of the organ include a Stopt [sic] Diapason 8', Open Diapason 8' (which only extends to tenor C, requiring both diapasons to be played together in order to use the full range of the keyboard), Principal 4', and Fifteenth 2'. Dr. Kitchen has recorded Stanley's Voluntary in G, op. 7, no. 9, and Handel's Fugue in A minor, op. 3, on the Parker organ.5 Interestingly, Parker built a second, two-manual enharmonic organ for the Foundling Hospital in 1768.

Another 18th-century chamber organ dates from 1763, the date when St. Cecilia's Hall opened. The organ was used in concerts until the hall closed in 1798. (The hall, having been refurbished in the 1960s, is once again the venue for concerts featuring instruments from the Russell Collection.) The third instrument, located in the Newman Gallery, is a Bernard "Father" Smith chamber organ from c. 1680. The specifications, which consist entirely of divided stops, are:

Bass

8' Diapason Bass

4' Principal Bass

2' Fifteenth

Treble

8' Diapason Treble

4' Principal Treble

2' Octave Treble

[rebuilt by Mander]

Wind is supplied through either a foot bellows or a modern electric blower. All of the above chamber organs reflect the disposition of English organs built after the restoration of the monarchy in 1660; i.e., principal stops at 8', 4', and 2' and, in the case of the Parker, stopped diapasons at 8'. The conventional registrational pattern of the time included solo stops plus accompaniment (hence the usefulness of the divided stops arrangement), diapasons (open plus stopped) for slow introductory movements, and full organ (8', 4', and 2') for faster movements. Stephen Bicknell has suggested that "There was a considerable revival of interest [in chamber organs] in the second half of the 18th century contemporary with (and perhaps because of) the great popularity of Handel, who seems regularly to have used small or even portable organs when playing continuo and for the performance of organ concertos as interludes to larger works."6   Bicknell also states that

By the end of the eighteenth century the chamber organ was firmly established as the instrument of choice for a well-to-do household, challenging both the harpsichord and the emerging fortepiano. The relative stability of tuning compared to a stringed keyboard instrument must have been an advantage, but it should also be noted that a small organ is a good vehicle not just for keyboard music, but also for transcriptions of instrumental works, and could readily be used for the accompaniment of family prayers.

He concludes that the organ's qualities of "reliability, versatility and dignity" must have accounted for its popularity.7

A greater contrast with these historical instruments than the McEwan Hall organ at the University of Edinburgh cannot be imagined. Built by Robert Hope-Jones in 1897, rebuilt by Henry Willis in 1953 and by Rushworth and Dreaper in 1980, the organ has problems because of the disparate placement of its divisions (the hall was designed without provisions for an organ, even though it was common for municipal concert halls at that time to include large instruments). Nonetheless, the organ sounds grand in the reverberant acoustics of the hall, where university graduations are held. The console looks a bit like a Jules Verne creation with its pressure gauges and electric dials, one of which is connected to the swell pedal to show incremental gradation (or "incremental frustration" as it's known to players).

The preceding organ and those described below all date from the second half of the 19th century, living testaments to the phenomenal rate of growth in organ building in England between 1860 and 1900. A few statistics tell the tale: in 1898, Harrison & Harrison of Durham claimed to have built 1,100 organs since 1861. Norman & Beard of Norwich produced even more astonishing numbers: between 1898 when their new factory was built and 1915 the company built over 1,000 new organs. In comparison, Sauer of Germany reached opus 1,000 only after fifty years of activity.8 Reasons for the rapid expansion in English organ building are numerous and include the wholesale replacement of older instruments, particularly those with a limited compass, increased prosperity of the middle class, which paid for new church instruments, and the construction of municipal concert halls in towns of any size.

The next organs I played were in Dundee, the fourth-largest city in Scotland. Three distinguished instruments exist in a three-block area in the heart of the city, which is pleasant and pedestrian-friendly. The first organ is located in St. Mary's Parish Church (Church of Scotland). I had not called ahead—in fact, I was simply being a tourist walking about Dundee and decided to poke my head in since the front door was open. Upon seeing the rich interior and a magnificent display of pipes in the rear balcony, I asked the volunteer guide if I might look at the organ. She very graciously assented, and I was delighted to discover a large three-manual instrument built in 1865 by Forster and Andrew of Hull and subsequently rebuilt by Rothwell (1939) and J. W. Walker (1969 and 1988). The console was open and inviting, so it was only a matter of minutes before I was actually playing. The specifications are:

Great

16' Double Diapason

8' Open Diapason 1

8' Open Diapason 2

8' Stopped Diapason

4' Principal

22/3' Harmonic Flute

2' Twelfth

2' Fifteenth

II Sesquialtera

IV Mixture

16' Double Trumpet

8' Trumpet (ext)

4' Clarion (ext)

Swell

8' Open Diapason

8' Viola da Gamba

8' Voix celeste

4' Principal

4' Lieblich Flute

2' Flageolet

III Mixture

16' Contra Fagotto

8' Cornopean

8' Oboe

4' Clarion

Super Octave

Sub Octave

Choir

8' Rohr Flute

8' Salicional

4' Gedeckt Flute

22/3' Principal

2' Nazard

2' Flautina

13/5' Tierce

11/3' Larigot

III Cymbel

8' Krummhorn

16' Double Trumpet

8' Trumpet (ext)

4' Clarion (ext)

Pedal

16' Open Diapason

16' Sub Bass

8' Flute Bass (ext)

8' Violoncello (ext)

4' Choral Bass (ext)

16’ Trombone

8' Tromba (ext)

A full battery of couplers and pistons plus an 8-channel memory system makes this organ suited for many kinds of repertoire. I only had time to try a voluntary by Stanley and a Buxtehude toccata before my younger daughter came looking for me (I'd left her and her sister parked outside), but I was impressed by the sound and feel of the organ in this parish church that in 1990 celebrated its octocentenary.

My serendipitous sampling of organs in Dundee continued on another day at St. Paul's Episcopal Cathedral. As churches go in Scotland, it is rather new, the cornerstone having been laid in 1853. The organ was built by Hill and Son of London in 1865, the year of the Cathedral's consecration. Hill, Norman and Beard reconstructed the instrument in 1975. Like the organs I saw in other British churches (with the exception of St. Mary's), this instrument is located in the choir with the pipes facing the singers. The organist's back is to the choir. The disposition of this large organ is similar to St. Mary's:

Great

16' Double Diapason

8' Open Diapason

8' Stopped Diapason

8' Gemshorn

8' Viole d'amour

4' Principal

4' Harmonic Flute

22/3' Twelfth

2' Fifteenth

IVMixture

8' Grand Trumpet

Swell

8' Open Diapason

8' Stopped Diapason

8' Viole d'orchestre*

8' Viole Celestes

4' Principal

2' Fifteenth

II Mixture

16' Shalmey

8' Cornopean

8' Oboe

4' Clairon

Suboctave

[Super] Octave

Choir

8' Lieblich Gedeckt

8' Gamba

4' Suabe Flute

2' Flautina

11/3' Larigot

8' Grand Trumpet

8' Clarinet

Sub Octave

[Super] Octave

Tremulant

Pedal

32' Harmonic Bass

16' Bourdon

16' Echo Bourdon**

16' Open Diapason

8' Bass Flute

8' Octave

4' Super Octave

4' Flute

2' Octave

16' Trombone

4' Clairon

Sub Octave

[Super] Octave

Unison Off

Tremulant

Swell & Choir under expression

Sw-Ch, Sw-Gt, Ch-Gt, manual-pedal couplers

General (4) and divisional pistons

* Very stringlike; works especially well with the Viole Celestes

** Enhances the Bourdon 16'

As was the case at St. Mary's, I was allowed access to the organ by helpful parishioners. When I arrived at St. Paul's on a Saturday morning, the only person I could find on the premises (even though the front doors were wide open and a charity hamburger stand was getting ready to open for business on the front steps) was the verger. He led me to the instrument, turning on power switches and lights as we went, saying "We have to show you Scottish hospitality!" I played for an hour, trying out various sounds and combinations and finally let it rip with the Widor Toccata. Feeling self-indulgent but happy with the sonic results, I set about changing my shoes and packing up when I was startled by two members of the flower committee who appeared and thanked me for playing. They told me that people in the street, hearing the music, had stopped to peer inside the church, probably wondering if a wedding were in progress.

A third large organ exists in Dundee within blocks of St. Mary's and St. Paul's. Situated approximately midway between the two churches is Caird Hall, Dundee's civic auditorium. The organ was built in 1922 by Harrison & Harrison to a design by the famous blind organist of Edinburgh, Alfred Hollins. The Caird Hall organ was Harrison & Harrison's first concert hall organ; as such it differs from some of their other instruments in having brighter reeds (on heavier pressure than usual) and more orchestral colors than the average church organ. In 1991 the organ was restored by the original firm with only minor changes to its original sound. No tonal changes were made, but the pitch was raised to make the organ usable with other instruments. Carlo Curley played the rededication recital on this occasion. A stoplist follows:

Great

16' Double Geigen

16' Bourdon (wood and metal)

8' Large Open Diapason

8' Small Open Diapason

8' Geigen

8' Hohlflute

8' Rohrflute

4' Octave

4' Waldflute

22/3' Octave Quint

2' Super Octave

IV Harmonics 17,19,b21,22

16' Contra Tromba

8' Tromba

4' Octave Tromba

Swell

8' Open Diapason

8' Stopped Diapason

8' Echo Salicional

8' Vox Angelica

4' Octave Geigen

4' Stopped flute (metal)

2' Fifteenth

V Mixture 12,19,22,26,29

8' Oboe

8' Vox Humana

Tremulant

16' Double Trumpet

8' Trumpet

8' Horn

4' Clarion

Orchestral Organ

16' Double Salicional (metal)

8' Viole d'Orchestre

8' Violes Celestes (to FF, 2 ranks)

8' Harmonic Flute

4' Concert Flute (harmonic)

2' Harmonic Piccolo

16' Cor Anglais

8' Corno di Bassetto

8' Orchestral Oboe

Tremulant

8' Tuba (unenclosed)

Pedal

32' Double Open Wood (FFFF)

16' Open Wood

16' Open Diapason (metal, leathered)

16' Geigen (Gt)

16' Salicional (Orch organ)

16' Subbass (Gt)

8' Octave (wood)

8' Flute (Gt)

16' Ophicleide (metal)

16' Trombone (Gt)

8' Posaune

The organ's pneumatic action has been fitted with an electronic memory, and the combination pedals removed and replaced with toe pistons. Otherwise, the instrument remains as it was originally. A concert series in the early autumn featured the organ and it was recorded in October 2004. I was unable to play the Caird Hall organ because of a guitar festival in progress, but the staff was most helpful in showing me the console and wind system and providing me with specifications for the instrument.

Some general observations can be made, at this point, about the organs I saw in Scotland. The large instruments are originally from the 19th century and are based on an orchestral tonal design with a preponderance of stops at 8' pitch. The pedal divisions rely heavily on extensions from the manuals. Bicknell identifies the philosophy underlying this esthetic as ‘build-up:' "the gradual crescendo from piano to fortissimo achieved by adding stops one by one, [which] seems to be the dominant characteristic of these Victorian instruments."9 It works in this wise: flue pipes come in many colors, from clear and fluty to reedy with harmonic overtones. As the flues approach the reedy end of the spectrum, mild strings and reeds come into play, creating a smooth blend. Swell-to-Great couplers further increase fullness of sound while masking any addition of single stops, and the Swell pedal also assists in creating a smooth crescendo. As Bicknell points out,

This manner of playing was later to become an idée fixe with English builders and players . . . As a method it was taken so much for granted that it can safely be assumed that Willis's mixtures were not usually intended to be heard unless some reeds were already drawn . . . there is no provision for a chorus of principals and mixtures that can be used extensively on its own: this is . . . in complete contrast to German taste.10

Although the reference is to instruments built by Willis, the description is general enough to be applied to other large late-19th and early 20th-century organs.

Perhaps it seems incongruous that all of the organs I saw and played in Scotland were built by English firms. Were there no Scottish organbuilders in the 19th century and earlier? Regardless of how we might think of Britons as members of a United Kingdom, there are national differences among the English, Scots, Welsh, and Irish. A bit of research was necessary to unearth information about organbuilding in Scotland, from which a clearer picture emerges of the past three centuries.

At the heart of the question is the ban on instruments in church issued by the Church of Scotland from the Reformation (around 1560) until around 1868.11 Organs were allowed for concerts and domestic use, but none were built or installed in this denomination until a very late date. Other denominations—the Episcopal, Roman Catholic, Unitarian, Congregationalist, and Baptist churches—were exempt, and instruments dating from the 18th century are known to have existed in them.12 Early 19th-century Scottish organbuilders, including Small, Bruce & Co of Edinburgh, John Renton, also of Edinburgh, and Robert Mirrlees of Glasgow, specialized in chamber organs, at least two of which are extant.13 I was very surprised to learn that the oldest surviving Glasgow-built organ was made by James Watt in 1762. The renowned engineer and inventor, associated more with the first steam engine than with pipe organs, constructed a single-manual instrument concealed in a table. It was the first of three organs built by Watt.14

In the second half of the 19th century, other firms arose in Dundee, Aberdeen, and Edinburgh, but they found it difficult to compete with the well-established English builders. An admittedly cursory search for information on Scottish builders in the 19th and early 20th centuries produced nothing—but perhaps a written history is in progress.

Today, Lammermuir Pipe Organs (est. 1983) is perhaps the best-known firm in Scotland and the only workshop "north of the border" specializing in new, mechanical-action organs.15 Op. 50 is scheduled for completion in 2005. The other company listed in an Internet link to pipe organ builders in the United Kingdom is Michael Macdonald (est. 1975) of Glasgow.16 Interestingly, besides building new instruments, Macdonald engages in rescuing historic organs from redundant buildings (primarily churches closed due to dwindling congregations).

I would like to think of my visit to Scotland as a prelude to further organ crawls  there and in other parts of the United Kingdom. There are many instruments to be played and much history to be learned in these islands.  

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Sebastian M. Glück,
New York, New York
The First Presbyterian Church
in the City of New York,
New York, New York

The First Presbyterian Church took root as a dissenting group of Scots and Irish Protestants who worshipped in a private home in 1706 and organized a congregation a decade later. By 1719, their first church building opened for worship, leading to a long and continuing history of controversial views regarding man’s relationship to religion, scripture, science, and politics. “The Church of the Patriots” survived revolution, fire, and urban expansion, dedicating the present church in 1849.
Among those on Old First’s roster of notable preachers was Harry Emerson Fosdick, who in 1922 declared from the pulpit that The New Knowledge, as postulated by Charles Darwin, was not inconsistent with Christianity. The uproar spread like wildfire; even the Presbytery of Philadelphia met in the home of John Wanamaker to discuss the matter. An unrelenting three-year campaign by notorious fundamentalist William Jennings Bryan led Fosdick to resign (without changing his views). Fosdick, a longstanding friend of the Rockefeller family, subsequently served as pastor of The Riverside Church for nearly half a century.
Only months before the demolition of the World Trade Center, Dr. Jon M. Walton became the Senior Pastor of First Presbyterian Church. He would soon inherit a stunned city and a congregation numbed by the murder of their members and the orphans left behind. Beginning their fourth century, the congregation and their pastor continue to rebuild—spiritually, physically, and emotionally. Out of tragedy, the church has strengthened, grown steadily in membership, and commissioned pipe organs for both the chapel and the sanctuary.

The Guilmant Organ School
During French composer and organist Alexandre Guilmant’s 1898 American tour, he and Dr. William C. Carl, organist and choirmaster of First Church, decided to open the United States’ first school for organ and church music, with instruction based upon the master’s method of teaching. The Guilmant Organ School’s first class was held on October 9, 1899 and offered instruction to church musicians until the early 1970s. The Guilmant Organ Recital Series continues in modern times, as part of the church’s rich music program that includes oratorio performances by the church’s respected choir and orchestra.

Previous instruments
Initially, conservative worship at First Presbyterian did not permit musical instruments or concert literature; unaccompanied psalmody was provided by a vocal quartet. They were permitted to sing the works of Palestrina, Victoria and Orlando di Lasso in the chapel, but only as entertainments and never at worship services.
In 1888 Roosevelt’s III/52 Opus 368 was built for the east tower gallery. When the elaborately carved chancel was added in 1920, the organ was replaced by Skinner Organ Company’s Opus 293, a IV/72 in the north chancel chamber. Its Echo division was given residence in the bell tower, speaking through an impossibly small grille in the ceiling. The doomed division was installed in a giant meat refrigerator with shutters, Skinner’s attempt to defeat the elements.
By the 1960s, the heating system had “baked the Skinner to death,” according to the late Dr. Robert S. Baker (1916–2005), then organist and choirmaster of the church. Tonal tastes had changed, and Austin Organs, Inc. installed their IV/85 Opus 2048, dedicated in 1965. The planned revamped Echo division never came to be, but the meat locker remains.
Upon Dr. Baker’s retirement in 1988, he was succeeded by his student, William F. Entriken. During Dr. Entriken’s ongoing tenure the church commissioned two pipe organs, both of which were designed and built by Sebastian M. Glück. In 2004, the Rees Jones Memorial Organ, a Georgian-inspired instrument tuned in Werckmeister III, was installed in Alexander Chapel. A recording of Opus 8 is available from the Organ Historical Society. The large sanctuary organ, Opus 12, was completed this year, funded by both First Church and the generosity of donors who gave individual stops or entire choruses of pipework in memory or honor of special people in their lives.
—Benito Orso

From the tonal director
There are advantages to not being “the first man at bat” when it comes to designing a pipe organ for a particular room. One benefits from the lessons of the past: what did or did not work tonally, what physical or environmental conditions helped or hindered the making of music, and what resources musicians may have used most often or what they felt was wanting.
Prevailing scaling and voicing practices of the 1960s (small scales, even smaller scales for the reeds, underlength resonators, low cut-ups, minimal languid treatment), coupled with an acoustic that “eats bass” and a chambered installation, conspired to keep the organ’s sound from reaching the listener.
Another characteristic of organs of the era (even very large ones) was the frustrating disposition of stops, often found at the wrong pitches in the wrong divisions for the accurate registration of the established literature. With enough stops drawn, the liturgy, hymnody, and anthem work were adequately accompanied, but registrational authenticity, saturated color, energetic drive, and cohesive clarity remained elusive.

The new approach
Two main divisions share the second manual: the superordinate Werck, inspired (in concept) by the late 16th-century Hamburg school, and the Great, a more familiar-looking Anglo-French amalgam with both 18th and 19th century ingredients.
The previous organ had no Great reeds, a Harrisonian trend that inevitably created balance problems. The provision of the Great Cornet, Trumpet, and Clarion in the new organ enables the rest of the organ’s reeds to fulfill their duties without compromise, and makes the 18th-century repertoire of several cultures come alive.
Both of these divisions can move about the organ via the coupling system, and if the Werck is used as the main division in early Northern literature, the Great can serve as the Oberwerk, the natural foil, distinguished by character more than brute strength.
This permits the Choir division to serve as its namesake, a secondary Swell rather than a penumbral “toy Positiv” of compromised and disjointed identity. Far less bold yet more colorful than the Solo department, the Choir still retains the essential classical elements within its accompanimental palette and cluster of instrumental pastels. A coherent collection of stops duplexed from the Great is available on this manual as well.
Large American Swell divisions have taken on a somewhat inelastic grundriss, the legacy of multicompetent sovereignty bestowed upon them by the English and thriving here through the Skinner school. And so it should be, a sensate plenipotentiary, home to a chorus of diapasons, a choir of flutes, two sets of undulants, the ubiquitous oboe and regal, and a molten battery of harmonic trumpets. Large scales and shallots with parallel walls (brilliance) and flat bottoms (fundamental) conspire to create a controllable, caged beast. My stratagem was not to reinvent the wheel, but rather to strip the execution of the formula of all shyness and vagaries.
Because we retained the cantilevered windchests from the previous organ (what was so bizarrely called “functional display” half a century ago), it was necessary to execute some compensatory tonal maneuvers for the enclosed divisions. Chambered organs of the period added to the disadvantage by drastically underscaling the expressive sections already in a sequestered relationship to the Great.
The Solo division is home to the usual suspects for an organ of this size and style. The soviet of harmonic bombardes is more brilliant yet less richly dense than the Swell battery. The three orchestral reeds, like all the color reeds in the organ, are made of common metal, rather than spotted. The French Horn and flat-top English Horn are legacy ranks from the Skinner, but alas, were so drastically altered in the 1960s (lowered pressures, revised resonating lengths, new tongues, new wedges) that they are merely historic metal, and we cannot claim lineage. Like the Choir Flügel Horn, they were rebuilt for this installation and are successful and convincing.
The Grand Chorus VIII is “the third Great,” the only mixture in the organ to embrace the 16′ harmonic series, voiced on 8″ wind and mounted in a commanding position in front of the Solo enclosure. It is made of spotted metal, although the 16′ rank is almost pure lead and the tenebrous 51⁄3′ contraquint is subdued. This lends gravitas and avoids murkiness.
The Pedal department takes advantage of the instrument’s electro-pneumatic action, supplementing its own structure with stops from the manual divisions. Some excoriate this centuries-old practice, but obdurate modern practitioners and their clients welcome the opportunity to mix mezzo-forte hues for the sake of nuance.
The full-length 32′ Helicon is not overly noisy, but rather a gentle tympani roll beneath the ensemble. The Harmonics of 32′ changes composition as it ascends the scale, maintaining clarity and immediacy of pitch identification in its reedy rumble. The recombinant effect of the two stops makes itself known without the vulgarity of a “loud for the sake of loud” voice that can be more ruinous than dramatic.
America’s half-century love affair with horizontal blatancy seems to have reached its dénouement as musicians and builders realize that a more solid and focused formant may be a wiser choice for a herald stop. The key to success is to avoid the objectionable ends of the bell curve (splatter and honk), and work toward a brilliant, focused, pure tone, devoid of grittiness and fringe harmonics. Here the Tuba projects a definite “aw” vowel, not a nasal, short “a.” After the stop’s inauguration, I returned to revoice it on 12″ rather than the original 10″ pressure. The result is that it speaks with greater authority and majesty, with no loss of focus or nobility.
Are 93 ranks sufficient? Certainly, although in context I do not believe that there is any wasted metal in the organ. Nonetheless, part of First Presbyterian’s liturgical and musical tradition involves the choir singing from the narthex and the east tower gallery as well as the chancel. This is a church that fills its pews with energetic singers. The vision of a Tower division, within the church, encased where the Roosevelt once stood, is the reason for preparing for it in the console. Keeping it within the church itself, at the same level as the main organ, away from bells, frost, and pigeons, should assure a happier fate than “echoes of the past.”
Both the new north balcony façade with its Zimbelstern and the console were designed to match the existing architecture of the room. The console cabinetry is oak, carved to match the window tracery found in the building. The interior is walnut, as are the manual accidentals and Skinner-style key cheeks. Pedal accidentals are rosewood, and the drawknobs are pao ferro. The three medallions that grace the music rack are jade.
The extensive combination action is a modern expectation, especially for a church with such a highly developed music program. We advise our clients that the combination action is likely the first item to need technical attention in a pipe organ, and we do keep more “precious” gadgetry to a minimum. Less-seen features are a separate set of pistons for the couplers, the Pedal on Choir coupler, and varying species of wood used for the toe studs, allocated by category. The divisional tags above each drawknob field, when pushed, cancel the knobs of their respective divisions.
The two organbuilders most responsible for the technical and structural realization of this installation were Robert Rast and Albert Jensen-Moulton, general manager of the firm. During onsite voicing and tonal finishing I was assisted by Mr. Jensen-Moulton at the console, whose ears and judgment I trust to achieve the firm’s tonal signature.
I firmly believe that it is the small organ that challenges the creativity and ingenuity of both the builder and the musician. But an instrument of broad scope does not relieve the designer of the obligation to apply all that history has taught us, especially regarding the literature. The “concert” literature was written by church organists for the instruments they played for worship. The scores are the recipe books, and the surviving instruments the resulting cuisine. The large, eclectic organ is not a cultural grab-bag of incompatible material, but a conceptual coalition that must result in stylistic unity, bearing the sound and personality of the builder.
—Sebastian M. Glück

WERCK (Manual II)
West Chancel Bay
32′ Quintadehn (Swell) [1]
16′ Præstandt [2] 61 pipes
8′ Octava 61 pipes
8′ Spitzflöte [3] 5 pipes
4′ Supra Octava 61 pipes
Mixtur IV 244 pipes
Zimbel III 183 pipes
16′ Fagott 61 pipes
Werck Silent

GREAT ORGAN (Manual II)
East Chancel Bay
16′ Bourdon (Swell)
8′ First Diapason 61 pipes
8′ Second Diapason [4] 12 pipes
8′ Chimney Flute 61 pipes
8′ Harmonic Flute (Solo)
8′ Erzähler 61 pipes
4′ Principal 61 pipes
4′ Octave [4] 12 pipes
4′ Night Horn 61 pipes
22⁄3′ Twelfth 61 pipes
2′ Fifteenth 61 pipes
2′ Koppelpfeife 61 pipes
Mixture IV 244 pipes
Cornet V [5] 185 pipes
8′ Clarinet (Choir)
8′ Trumpet 17 pipes
8′+4′ Grand Jeu [6] 12 pipes
Great Silent
Chimes (Solo)
Tremulant

SWELL ORGAN (Manual III)
Chamber Level I, West
16′ Bourdon 12 pipes
8′ Geigen Diapason 61 pipes
8′ Stopped Diapason 61 pipes
8′ Salicional 61 pipes
8′ Voix Céleste 61 pipes
8′ Flûte Conique 61 pipes
8′ Flûte Céleste 49 pipes
4′ Geigen Octave 61 pipes
4′ Chimney Flute 61 pipes
2′ Octavin 61 pipes
Full Mixture V 269 pipes
16′ Double Trumpet 61 pipes
8′ Harmonic Trumpet 61 pipes
8′ Hautboy 61 pipes
8′ Vox Humana 61 pipes
4′ Harmonic Clarion 61 pipes
Tremulant
16′ Swell to Swell
Swell Silent
4′ Swell to Swell

CHOIR ORGAN (Manual I)
Chamber Level I, East
16′ Double Gemshorn 12 pipes
8′ Principal 61 pipes
8′ Doppelflöte [7] 61 pipes
8′ Gemshorn 61 pipes
8′ Gemshorn Céleste 49 pipes
4′ Prestant 61 pipes
4′ Flute 61 pipes
22⁄3′ Nazard 61 pipes
2′ Recorder 61 pipes
13⁄5′ Tierce 61 pipes
11⁄3′ Larigot 61 pipes
Mixture III 183 pipes
16′ Bass Clarinet 12 pipes
8′ Trumpet Minor 61 pipes
8′ Flügel Horn 61 pipes
8′ Clarinet 61 pipes
Tremulant
16′ Choir to Choir
Choir Silent
4′ Choir to Choir
Great Stops on Choir
8′ First Diapason
8′ Chimney Flute
8′ Erzähler
4′ Principal
2′ Fifteenth
IV Mixture
Chimes (Solo)
Zimbelstern 8 bells

SOLO ORGAN (Manual IV)
Chamber Level II, West
8′ Spitzflöte (Pedal)
8′ Viola Major 61 pipes
8′ Viola Céleste 61 pipes
8′ Harmonic Flute 61 pipes
4′ Principal 61 pipes
4′ Orchestral Flute 12 pipes
Grand Chorus VIII [8] 370 pipes
8′ French Horn 61 pipes
8′ English Horn 61 pipes
8′ Corno di Bassetto 61 pipes
16′ Bombarde Harmonique 61 pipes
8′ Trompette Harmonique 61 pipes
4′ Clairon Harmonique 61 pipes
Tremulant
16′ Solo to Solo
Solo Silent
4′ Solo to Solo
Chimes 20 tubes

TUBA ORGAN (Floating)
North Gallery Arch
Cornet V (Great)
Grand Chorus VIII (Solo)
16′ Tuba Magna
8′ Tuba Major 61 pipes
4′ Tuba Clarion 12 pipes

TOWER ORGAN (Floating)
East Tower
8′ Principal drawknob only
8′ Holz Gedeckt drawknob only
8′ Viola Dolce drawknob only
8′ Unda Maris drawknob only
4′ Prestant drawknob only
2′ Doublette drawknob only
IV Fourniture drawknob only

PEDAL ORGAN
Chamber Level II, East

32′ Contra Sub Bass 12 pipes
16′ Open Diapason Wood 32 pipes
16′ Open Diapason Metal 32 pipes
16′ Sub Bass 32 pipes
16′ Præstandt (Werck)
16′ Double Gemshorn (Choir)
16′ Bourdon (Swell)
16′ Spitzbass 12 pipes
102⁄3′ Contra Quint 7 pipes
8′ Principal 32 pipes
8′ Stopped Flute 5 pipes
8′ Spitzflöte 32 pipes
8′ Præstandt (Werck)
8′ Stopped Diapason (Swell)
8′ Gemshorn (Choir)
51⁄3′ Quint 7 pipes
4′ Fifteenth 32 pipes
4′ Spitzflöte 5 pipes
2′ Choral Bass 12 pipes
Mixture III 96 pipes
32′ Harmonics of
32′ Helicon [9] 12 pipes
16′ Posaune 32 pipes
16′ Bombarde (Solo)
16′ Double Trumpet (Swell)
16′ Fagott (Werck)
16′ Bass Clarinet (Choir)
8′ Trumpet 12 pipes
8′ Fagott (Werck)
8′ Clarinet (Choir)
4′ Clarion 12 pipes
4′ Rohr Schalmei [10] 32 pipes
Chimes (Solo)
TOWER PEDAL ORGAN
16′ Tower Bass drawknob only

Couplers
Werck to Pedal 8′
Great to Pedal 8′
Swell to Pedal 8′, 4′
Choir to Pedal 8′, 4′
Solo to Pedal 8′, 4′

Swell to Great 16′, 8′, 4′
Choir to Great 16′, 8′, 4′
Solo to Great 16′, 8′, 4′

Choir to Swell 8′
Solo to Swell 8′

Pedal on Choir
Werck to Choir 8′
Great to Choir 8′
Swell to Choir 16′, 8′, 4′
Solo to Choir 16′, 8′, 4′

Werck to Solo 8′
Great to Solo 8′
Swell to Solo 8′

Transfers & Mechanicals
Tuba on each manual and pedal
Tower on each manual and pedal
Great/Choir Transfer
Mixtures Off
Reeds Off
Full Organ I
Full Organ II
Full Pedal
All Swells to Swell

Expression Pedals
Choir, Swell, Solo, Crescendo

Notes
[1] 1–12 resultant
[2] 1–12 wood
[3] Upward extension of Pedal stop
[4] Extension of Werck 16′ Præstandt
[5] G20–G56; mounted in East bay
[6] Extension; draws 8′ Trumpet as well
[7] Wood; two mouths per pipe
[8] Unenclosed
[9] Wooden boots; 8″ wind pressure
[10] Brass; mounted in West bay

Wind Pressures
Main organ: 4″
Solo organ: 8″
Tuba organ: 12″
Tower organ: 31⁄2″
Pedal 32′ Helicon: 8″

Cover photo by Len Levasseur
Interior photos by Albert Jensen-Moulton

Glück New York
170 Park Row, Suite 20A
New York, NY 10038-1156
212/608-5651
[email protected]
www.GluckNewYork.com

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