Skip to main content

Orgues Létourneau restoration of 1960 Casavant

Orgues Létourneau announced the signature of a contract to complete the restoration of the 1960 Casavant Frères pipe organ (Opus 2583) at le Séminaire St-Joseph of Trois-Rivières, Québec.

Having restored the wind system in 2014, Létourneau began a comprehensive restoration of the organ’s electro-pneumatic windchests and three-manual console in July, as well as a restoration of the organ’s reed stops. Completion of this 32-stop instrument’s refurbishment is expected for the beginning of classes in the fall of 2016.

For information: www.letourneauorgans.com.

Related Content

The organ at St. James United Church, Montréal

The genealogy of a restored instrument

Andrew Forrest

Andrew Forrest began with Orgues Létourneau Limitée in February 1999 and in his current position as Artistic Director, oversees all of the company’s projects. He travels regularly to meet with clients, architects, and acousticians, as well as to supervise the company’s on-site tonal finishing. Mr. Forrest has a keen interest in the art of pipe scaling and has completed studies of the String division of Philadelphia’s Wanamaker Organ and the 1955 Aeolian-Skinner pipe organ at Winthrop University among others. He served on the local organizing committee for the joint AIO-ISO 2010 convention held in Montréal, and in October 2011, Forrest was elected to the American Institute of Organbuilders’ Board of Directors for a three-year term. He holds a bachelor of arts degree in political science and economics from Carleton University in Ottawa, Ontario. An organist himself, Andrew Forrest has two children and lives in Mont-Saint-Hilaire, Québec.

Default

The present pipe organ at St. James United Church is unique among Montréal’s many interesting organs because much of the organ’s pipework dates back to an 1889 instrument by E.D. Wadsworth & Brothers, Organ Builders. Edward Wadsworth opened his own organbuilding company in Manchester, England, in 1861 after apprenticing with Kirtland & Jardine; his family subsequently continued in the organbuilding trade under various forms of the Wadsworth name until 1946, when the company was absorbed by Jardine & Company of Manchester. Present-day British organbuilding colleagues have suggested that earlier Wadsworth organs with mechanical actions are superior to the later pneumatic examples, but it remains clear that the Wadsworth name never achieved the status of other British builders during the latter half of the 19th century, such as William Hill, “Father” Henry Willis, or T.C. Lewis.

Perhaps sensing new business opportunities, Edward Wadsworth moved to Montréal in 1887 to establish a branch office of the family company at 298 Craig Street (which today is called rue St-Antoine). The company built two instruments in Canada, the first being a small tracker organ of ten stops for Trivett Memorial Church in Exeter, Ontario, in 1888. The second project for St. James Methodist Church (as the church was originally known) was on a grander scale; the handwritten contract dated June of 1888 was for a grand pipe organ of 49 stops with “tractile” key action. The price for the new organ was established at $11,550, less $2,375 for the church’s old pipe organ. For reference, the signing of the Wadsworth contract took place at the same time as construction was ongoing in the workshops of Samuel and Claver Casavant of a 73-stop instrument for Montréal’s Basilique Notre-Dame; the price for the Casavant organ was some $24,800.

With a 32 flue stop in the pedal division and two divisions on each of the three manuals, the Wadsworth organ was a novel and complex instrument. The two divisions per manual could be played separately, or coupled together by the touch of a thumb piston under each manual. In addition, each manual had its own drawknobs for appropriate pedal stops and a dedicated “pedalier” thumb piston to bring the selected registration into play as one moved from manual to manual. The middle manual controlled the Great and Back Great divisions, while the Solo—in its own swell box—was partnered on the lowest manual with the unenclosed Choir. The Swell and Echo divisions, playable from the third manual, were enclosed together.

A comparison of the 1888 contract to the instrument’s final specification shows that two optional stops—a 16 Lieblich Gedackt for the Choir and a 16 Contra Fagotto for the Solo—were added as the organ was being built. Stops were equally rearranged within the specification, presumably for a better musical result: The 16 Contra Fagotto was moved to the Back Great division with the Great 8and 4 reeds, permitting the reeds to be brought in or retired collectively in a ventil-like fashion via the thumb pistons under the Great manual. The 8 Vox Humana likewise migrated from the Solo division to the Echo, while the 8Gamba and 8 Voix Celeste stops came together in the Solo from their separated locations in the Swell and Echo divisions respectively.

Lynnwood Farnam served as organist for St. James Methodist Church from 1904 to 1905, and was well acquainted with the Wadsworth instrument. His notebook entry on the organ provides many details on the as-built stoplist and forms the basis for our understanding of the completed 1889–91 Wadsworth instrument. Though Farnham’s pages on the St. James organ are typically meticulous, it is unclear what kind of key action or key actions Wadsworth employed in his instrument; but it seems highly unlikely that the organ had purely mechanical key action. At the least, some form of pneumatic action would have been employed to manage the complexity of two divisions per manual. Farnam does list all couplers as operating pneumatically, with the console having the six usual unison couplers along with sub and octave couplers for the Swell manual, and a Swell to Great Sub coupler.

Unfortunately, the luster literally wore off the Wadsworth instrument at St. James Church within two years of its completion in 1889. The new organ was frequently crippled by problems arising from humidity and heating within the new church building. The church acknowledged this in an indenture document signed with Wadsworth in June  1891, wherein the complaint was also lodged that the organ’s “exterior has not preserved its absolutely fresh appearance.” The agreement offered Wadsworth an additional $1,000 to repair and otherwise complete his instrument, which, according to the document, had already been in place for two years.

The results of this remedial work were proclaimed satisfactory in a letter dated September 23, 1891, from the agreed-upon arbiter, Frederick Archer, to John Torrance, Secretary to the Trustees of St. James Methodist Church:

 

My dear Sir,

I have this day examined in detail the organ erected by Mr. E. Wadsworth in St. James Church, Montreal with the following results.

I find the wind supply is now ample for every possible purpose, its transmission to every junction of the instrument with uninterrupted “steadiness”. The wind trunks, sound boards, etc. are perfectly air tight and the whole of the mechanism is in thoroughly satisfactory condition.

The repairs have been carefully and substantially done in full accordance with the agreement entered into with him in June last, and with ordinary care and attention, the instrument will, to the best of my knowledge and belief, be now found entirely adequate to all legitimate demands made on it.

. . . I am pleased to be able to report so favourably, but as Mr. Wadsworth has evidently done his work of renovation in so conscientious and thorough a manner, it is but one to him that I could bear witness of the fact. 

 

Archer was a renowned English organist and choral conductor living in the United States, with a reputation as an expert on pipe organs that extended as far as Montréal; he played three dedicatory concerts on the Casavant organ at la Basilique Notre-Dame in May of 1891.

If the Wadsworth instrument was indeed playing as early as 1889, this raises questions about how such a large pipe organ was built within a year by an organ builder who had only arrived in Montréal a few years earlier. For example, from where did Wadsworth obtain his pipework for the new St. James organ? One distinct possibility is that he purchased pipes from another builder such as S.R. Warren & Sons or from a supply house. Similarly, Wadsworth may have ordered pipes from the family workshops in Manchester, England, and had them shipped to Canada. Having said that, Wadsworth was accused of using old pipework in the new organ for St. James Church, including the Pedal 16 Trombone and the Echo 8 Hautbois. Our survey of the organ’s present pipework suggests that some ranks pre-date 1889: the f#19 pipe of the Great 16 Double Diapason, for example, is clearly scribed “1881”, some seven years before the organ’s contract was signed.

Considering the spatial volume of the sanctuary at St. James’ Church and the organ’s recessed location within the chancel, the scaling of the Wadsworth pipework is surprisingly modest in comparison with the large organs of, say, William Hill. The original Great 8 Open Diapason approaches the Normalmensur (NM) standard around 4 C and again in the 1 octave but never exceeds it. The Great 4 Principal is consistently two to three pipes smaller than the 8′, and it is only in their uppermost octaves that the Great 223 Twelfth (a tapered rank) and 2Fifteenth ranks exceed NM. These statements are slightly complicated by Warren’s re-scaling and re-pitching of the original pipework in their later reconstruction, but it remains that the scalings of Wadsworth’s principals and choruses were unexpectedly reticent. The quality of the Wadsworth pipes is unremarkable when compared with the later Warren and Casavant pipes, and while most of Wadsworth’s metal pipes were made from spotted metal, the metal itself is quite thin. The Swell 8 Viola Ætheria is an extreme example: the spotted metal in the bass octaves is so thin that lifting the pipe carelessly from the top can easily deform the pipe’s body. The effect produced by these moderately scaled pipes sounding on generous wind pressures and having been voiced to fill a large room is one of surprising brilliance and great clarity.

Wadsworth’s wooden stops throughout the organ were unvarying, with stopped bass and tenor octaves that transition to open pipes with inverted mouths at c25, similar to a Melodia. The Solo 8Concert Flute and the Choir 8 Lieblich Flute are traditional in the sense that the open pipe bodies are deeper than they are wide, but the proportions for the Great 8 and 4 flutes are notably wide and shallow. The present Choir 8 Flute Celeste originally served as Wadsworth’s 8 Echo Flute and also features this type of wide mouth construction. Like the metal pipes, the quality of construction is adequate but unexceptional; the thickness of the wood is consistently thinner than the later Warren pipes, and the quality of the joinery is slightly coarse and uneven.

Though E.D. Wadsworth & Bros. was still advertising in the Montréal area as late as 1902, it is unclear what happened to Edward Wadsworth after the completion of the St. James organ in 1891. Wadsworth did not achieve fame or fortune with the St. James’ organ: within days of Frederick Archer’s note pronouncing the organ complete in September 1891, Wadsworth sent the church trustees a handwritten note requesting an advance of $30 as he found himself “rather short.”

The Wadsworth organ served the church for eighteen years, a period that included Lynnwood Farnam’s tenure as organist. It was replaced in 1909 with a pipe organ by the Warren Church Organ Company, reusing a majority of the Wadsworth pipes, at a cost of $6,000. The Warren Church Organ Company was established in Woodstock, Ontario, in 1907 by Frank, Mansfield, and Russell Warren, and can be considered the last vestige of the once-proud Warren name in Canadian organbuilding.

The Warren organ added a number of new stops and redistributed most of the Wadsworth ranks throughout the instrument. A massively scaled 8 Open Diapason was added to the Great, displacing Wadsworth’s original to secondary status. The Choir division was enhanced by a new 8 Cor anglais with free reeds; this stop was likely purchased from a supplier, as its construction details are unlike anything else in the organ. A new Solo division was also provided on some 10′′ of wind and included new Stentorphone, Doppelflöte, German Gamba, and Tuba stops.

It appears Warren provided all-new wind chests rather than reusing the Wadsworth chests; this conclusion is based on Farnam’s description of the operation of the sub octave (G) and octave (A) couplers for the Great division and the general increase in the number of stops per division. The rearranging of the Choir to reside within the same expressive enclosure as the Swell, and likewise the Echo with the Solo, is further confirmation that the 1909 instrument represented substantial change behind the original Wadsworth façade.

The new Warren console of four manuals provided a new level of flexibility for organists, with each piston being adjustable by drawing the desired stop combination and then pulling the piston head out by a fraction of an inch. There were a total of four pistons operating on the entire organ and between three and five pistons operating on each division. The console also featured a pédale à bascule (a balanced pedal) providing a general crescendo and diminuendo effect.

Our examination of the pipework suggests that the pitch of the Wadsworth pipes was sharp of modern concert pitch (A=440Hz). To lower the pitch, Warren moved all of the Wadsworth stops up by one note and provided a new low C pipe for each stop; this served to increase the scale of each stop by one pipe in the process. The Warren company also filled out the gaps in Wadsworth’s numerous short-compass stops, such as the Great 16 Contra Fagotto, Choir 8 Clarionet, Echo 8 Echo Flute, Choir 8Dulciana, and the Choir 8 Voix Celeste.

Warren went beyond re-pitching the organ in some cases and rescaled several ranks, likely to achieve a fuller sound. It is equally possible that Wadsworth himself may have engaged in some re-scaling to suit his purposes, if one allows he recycled older pipework in his 1889 instrument. For instance, the Choir 4Flûte Octaviante and Great 4 Principal ranks both have many pipes marked with three successive pitches, suggesting that the original scale was too small. In the same way, the Swell 8 Open Diapason and 4 Octave stops have been rescaled no less than three times by their fourth octave. As with adjusting the scales of various stops, there is no reason to think Warren would have hesitated to increase wind pressures and/or revoice the Wadsworth pipework as needed.

The Warren company was equally revisionist with the organ’s reed stops. The scales for Wadsworth’s original Great reed chorus were surprisingly thin—notably smaller than the Swell chorus—so Warren replaced the Great 8Trumpet with a new stop of larger scale. The original 8 Trumpet was reworked into a 16 Bassoon for the Swell division, with Warren providing twelve new half-length pipes for the bottom octave. Warren also added eighteen new full-length pipes to complete the missing bass of the Great 16 Contra Fagotto. In fact, the only Wadsworth reed stops to emerge from the Warren workshops relatively untouched—beyond being shifted up one pipe as part of re-pitching the organ—were the Swell 8 Cornopean, the Great and Swell 4 Clarions and possibly the Swell 8 Vox Humana (which disappeared in 1956). Most of Wadsworth’s color stops were replaced outright, though the 8 Clarionet was rebuilt with new shallots, blocks, and boots, as well as equipped with new adjustable bells for tonal regulation. The 1889 organ had two oboe stops—the Solo 8 Orchestral Oboe and the Echo 8 Hautbois—though Farnam’s notes state that the Orchestral Oboe’s pipes had been “taken out” by the time of his visit. Neither stop survived; the pipes for both the present Swell 8Oboe and the Solo 8 Orchestral Oboe are consistent in terms of construction and materials with Warren’s other work.

Farnam returned to St. James Methodist Church on February 15, 1910, to play the new Warren organ, and his notes again provide useful details about the changes that were wrought. Farnam did not seem entirely pleased with all of the changes made to the instrument, noting that the “32-foot has been quite ruined…” and all of the 2 stops seemed very “spiky,” especially the 2 Fifteenth in the Great. He praised the new electric key action, though went on to mention the Swell action was very noisy from inside the instrument.

After nearly thirty years of service from the Warren organ, St. James United Church—note the change in name—signed a contract with Casavant Frères in July 1938 for an organ that reused almost all of the old pipework on new windchests. As stipulated in the purchase agreement, the organ would be installed by December 18, 1938—some five months later—at a cost of $16,000. Wadsworth’s 16 façade was to be preserved, though Casavant successfully lobbied to have the façade moved two feet towards the nave to accommodate the enlarged instrument. The short amount of time between the contract signing and the project’s anticipated completion may reflect the lingering effects of the Great Depression; it is likewise indicative that Casavant agreed to finance nearly half of the contract amount over a three-year period after the organ had been completed!

Casavant’s Opus 1608 incorporated their state-of-the-art electro-pneumatic windchests with pitman-type stop actions built into the pouchboards for instantaneous registration changes. The compasses of the manual divisions were increased from 61 notes to 68 notes, and the number of pedals increased from 30 to 32 notes. The organ’s wind system was comprehensively redesigned, reusing old wind reservoirs and their cone-valve regulators where practical. A new four-manual console was also provided, incorporating Casavant’s pneumatic combination action and trademark furnishings. Like Warren, Casavant consolidated the instrument’s specification from five manual divisions to four—eliminating the Echo division—and transferred several stops between divisions in the process. The Swell, Choir, and Solo divisions were furnished with independent expressive enclosures, each operated by Casavant’s 8-stage pneumatic motors.

A new Nazard 223 made up of stopped pipes was added to the Choir, while a 4Violina—made up largely from repurposed pipework—was added to the Solo division. The Pedal division was augmented through new extensions to the existing stops, though the Wadsworth 16–8 Violone rank appears to have been entirely replaced in 1938 with new pipes. The original Pedal 16 Trombone with its wooden shallots was extended downward by twelve full-length pipes to create the 32 Bombarde stop, with the entire rank sounding on 7′′ wind pressure. The Carillon (or Chimes) tubes were maintained from the 1909 instrument but provided with a new striker rail, and a new 61-note Harp was added. Finally, whatever was left of Wadsworth’s “ruined” 32 Open Diapason was eliminated, and a new 32Acoustic Bass stop was provided with twelve independent pipes sounding at the fifth to create the 32 effect.

The Wadsworth-Warren instrument would have been a comfortable fit with the tonal inclinations of Stephen Stoot, Casavant’s technical director in 1938. An Englishman, many of Stoot’s instruments drew from this heritage, and in this sense the Wadsworth and Warren materials would not have seemed particularly foreign—though there may have been some disappointment with their quality. As one example, the placement of reed choruses on separate windchests was a trend in English organbuilding during the late Victorian and Edwardian eras, enabling higher wind pressures for the reed stops for a smoother tone. At St. James, the Great and Swell reed choruses were indeed separated in this manner, but the similar wind pressures between flues and reeds ultimately made this something of a hollow gesture.

After 1938, the organ saw a few changes prior to the restoration undertaken in 2011–12. The 8 Vox Humana in the Swell division was replaced during the mid-1950s with a stopped 223Nazard rank. In the 1980s, the original Great mixtures were replaced with two new stops that were poorly suited to the instrument’s aesthetic. Likewise, the Great and Swell reed choruses were modified to give a brighter tone, with the resonators being cut to length after the original regulating slots had been soldered shut. One other significant change relates to the instrument’s appearance: church photos show a heavy drape hung above and to the sides of the Wadsworth façade, serving to hide the windchests and pipes from the Great and Pedal divisions. This drape was in place until possibly the early 1980s but it is unclear when exactly it disappeared; Philip Crozier, Director of Music at St. James, relates the drape had been removed by the time he was hired in 1986. The drape’s disappearance would have surely had some effect on the sound of the organ, tilting the organ’s tonal balance towards an even more present and brilliant sound—though to what degree can only be guessed.

The restoration work undertaken by Orgues Létourneau Limitée over a twelve-month period included re-leathering all of the electro-pneumatic windchest actions; restoring all of the wind reservoirs and other wind system components; and documenting in detail the instrument’s pipework. Forty ranks from the original Wadsworth instrument have survived, though many ranks have been subsequently rescaled or rearranged as described above.

As part of the restoration effort, two new mixtures were built for the Great division to replace the unsuitable examples added in the 1980s. In the absence of information regarding their original compositions, the new mixtures’ breaks follow English examples contemporary to the Wadsworth instrument, while the scalings follow progressions established by the Great 2 Fifteenth and the original Swell mixture. The mild Swell mixture (containing a tierce rank) was restored to its original specification, with the two breaks returning to their original places at c25 and f#31. Finally, a new slotted 8 Vox Humana in the style of Father Willis was developed and installed in the Swell division.

After nearly 75 years of service, the four-manual console was thoroughly rebuilt to discreetly incorporate modern playing conveniences, including multiple memory levels, additional thumb pistons, and a general piston sequencer. The organ’s switching system and wiring—much of it dating back to 1938—was entirely replaced with a new state-of-the-art system. Beyond the Wadsworth pipework from 1889, some of the instrument’s more intriguing tonal features include the full-length 32 Bombarde, the Solo 8 Stentorphone with its leathered upper lips, the free-reed 8 Cor Anglais, and the 61-note Harp stop in the Choir division.

The organ was tonally regulated within the church by a team of Létourneau voicers over the course of several weeks in early 2012. Shortly thereafter, the church’s offices and meeting spaces were heavily damaged in a fire, though the sanctuary and the organ were spared. The restored organ was first heard in concert during the church’s annual noon-hour series throughout the following summer, and as autumn approached, the organ served as the “home” instrument for the annual Orgues et Couleurs festival, with two major solo concerts performed by Johann Vexo and Philip Crozier. Since Mr. Crozier’s appointment as Director of Music, the organ has been heard in a continuous series of summer recitals over the past 26 years, with the single exception being the summer of 2011, when the instrument was being restored in the Létourneau workshops.

An instrument in the English Town Hall tradition, the pipe organ at St. James United Church has played an important role in Montréal’s organ scene and has hosted concerts by renowned organists such as Lynnwood Farnam, Fernando Germani, Raymond Daveluy, André Marchal, Bernard Lagacé, E. Power Biggs, Francis Jackson, and Simon Preston. More recently, the instrument has been heard in performances by Joseph Nolan and Sietze de Vries. All of us at Létourneau Pipe Organs remain honored to have been entrusted with this significant restoration project and are pleased to see this pipe organ reclaiming its rightful place as one of Montréal’s most noteworthy instruments.

The author would like to thank the following individuals for their assistance in preparing this article: John Mander, Mark Venning, David Wood, Karl Raudsepp, Bill Vineer (The Vineer Organ Library), Allen Fuller, Philip Crozier, Fernand Létourneau, and Dany Nault.

The restoration of the chancel organ at the Cathedral-Basilica of Notre Dame de Québec

Andrew Forrest

Andrew Forrest began with Létourneau in February 1999 and, as the company’s artistic director, oversees all of the company’s various projects. He travels regularly to meet with clients, to supervise the company’s on-site tonal finishing, and to speak about the pipe organ. Areas of particular interest for Forrest include pipe scaling and reed tone. Among others, he has completed studies of the Wanamaker Organ’s String division and the 1955 Aeolian-Skinner pipe organ at Winthrop University. He was on the organizing committee for the joint AIO-ISO 2010 convention in Montréal, and from 2011 through 2014 served on the board of directors for the American Institute of Organbuilders. More recently, Forrest was elected vice president of the Associated Pipe Organ Builders of America in the spring of 2017. He holds a Bachelor of Arts degree from Carleton University in Ottawa, Ontario.

Default

The Cathedral-Basilica of Notre-Dame de Québec is an important and historic location for the Catholic Church in North America as it was here the Church of Our Lady of Peace (Église Notre-Dame-de-la-Paix) was built in 1647. It became the first parish church north of Mexico in North America in 1664 and was dedicated as the Church of Our Lady of the Immaculate Conception (Église Notre-Dame-de-l’Immaculée-Conception). Ten years later, the church was made the cathedral of the newly established diocese of Québec under Bishop François de Laval. The cathedral was almost completely destroyed during the battle for Québec in 1759 and was rebuilt between 1766 and 1771 from the remaining walls to resemble the previous building.

Further changes and improvements to the cathedral’s design took place in the nineteenth century, including the addition of a neoclassical façade, and the cathedral was elevated to the status of basilica in 1874 in honor of the diocese’s founding 200 years earlier. In the twentieth century, a devastating fire on December 22, 1922, forced the parish and diocese to rebuild again from singed outer walls. The reconstruction project took eight years, and while modern construction materials and techniques were employed, the cathedral’s architecture was again modeled after its predecessors.

The church was home to a pipe organ by an unknown builder as early as 1657, and this was followed by a number of instruments of increasing size and complexity by Robert Richard, Thomas Elliot, Louis Mitchell, and the Casavant brothers among others. Casavant’s Opus 211 from 1904, an electric action instrument with 46 stops over three manuals and pedal, was destroyed in the fire of 1922. The rebuilding of the Cathedral-Basilica in the years following saw the installation of three new pipe organs by Casavant Frères between 1924 and 1927: a seven-stop instrument for the Chapel of St. Louis, a 25-stop instrument for the sanctuary, and a grand 69-stop instrument in the church’s gallery. The organ in the Chapel of St. Louis remains as it was in 1924 apart from two stops having been swapped between the Grand-Orgue and the Récit divisions. While the history of the sanctuary organ follows, the gallery organ currently awaits rebuilding after some spectacularly unskilled alterations in the 1970s and a corrective reconstruction from 1983 through 1985.

The sanctuary organ was built in 1924 as Casavant’s Opus 1024 and is installed behind the first two triforium bays on the south side of the sanctuary; it is invisible from the nave. The instrument’s terraced two-manual console was originally installed opposite in the north triforium where it was situated in the midst of an amphitheatre-like arrangement of benches. The organ was built with electro-pneumatic wind chests with ventil-style stop actions and is tonally similar to other instruments from the period with its generous number of foundation stops. When the gallery instrument was installed in 1927, the sanctuary organ was made playable from the gallery organ’s enormous four-manual console.

Subtle differences from Casavant’s conventional practices at that time include the placement of the 8Trompette stop in the Récit division instead of the Grand-Orgue, as well as the inclusion of independent mutations stops in the Récit. It is said the French composer and organist Joseph Bonnet was responsible for the placement of the 8 Trompette, having drawn an arrow on the organ’s proposed stoplist to move the stop from the Grand-Orgue to the Récit. Bonnet was likely consulted on the organ’s specification by Henri Gagnon, a gifted Québecois organist and titulaire at the Cathedral-Basilica from 1915 until his death in 1961. Gagnon lived in France from 1907 to 1910 and studied with Eugène Gigout and Charles-Marie Widor among others; he returned to France during the summers of 1911, 1912, 1914, and 1924 for further studies with Widor and Bonnet.

From the start, the instrument served the parish’s daily Masses, providing commentary on the liturgy and accompanying students from the nearby Grand Séminaire. Opus 1024 and the students from le Grand Séminaire were also sometimes heard in alternatim with les Petits Chanteurs de la Maîtrise (the chapter’s boy choir) who would sing from the gallery, accompanied by the gallery organ, Opus 1217.

The transfer of le Grand Séminaire to new facilities in the Ste-Foy neighborhood of Québec City in 1959 brought an end to the singing of the daily Mass in the cathedral. The explicit need for a sanctuary organ disappeared as a result, and with the instrument reportedly suffering from electrical problems, Opus 1024 was switched off at the blower’s breaker and abandoned.

It wasn’t until after Marc d’Anjou’s appointment as titular organist to the cathedral in 1993 that Opus 1024 was heard again from the distant gallery console. Some cleaning, minor repairs, and tuning followed, and this helped show the organ’s potential utility. The sanctuary console was carried down soon after from the triforium to the floor of the sanctuary where it was installed to the south of the altar. To provide the console and its electro-pneumatic mechanisms with wind, a crude flexible wind line was lowered from the triforium level inside a nearby column. From the column, the wind line snaked across the floor to the console where it entered through a hole cut into the side panel. The organ itself later suffered some minor water damage while the exterior of the cathedral was being sandblasted, but the affected portions were repaired soon after.

The contract to restore the sanctuary organ was awarded to Orgues Létourneau after a thorough evaluation process and a generous grant was provided to the cathedral towards the costs of the organ’s restoration by the Conseil du patrimoine religieux du Québec. A formal contract was signed in March 2014, the console was removed and wrapped for transit the following August, and the instrument itself was dismantled one month later. The wind chests’ internal components, some wind system elements, and much of the organ’s pipework were removed for transport to and restoration in the Létourneau shops.

The restoration of the instrument’s electro-pneumatic wind chests was a straightforward but time consuming process. All old leather diaphragms on the pouchboards were removed and replaced, while the primary actions were completely restored with new leather, felts, and leather nuts as well as new threaded wires. The wind chests have ventil-type stop actions, meaning the chests are subdivided laterally into chambers under each stop. The flow of wind to each chamber determines if the stop above plays with the flow being governed by a pneumatically operated valve. Given the quantity of wind going to each stop, these ventil valves are necessarily large and their prompt operation via pneumatics is paramount. The ventil stop actions were thoroughly restored with new materials similar to the originals and adjusted on-site for optimal operation.

The organ’s wind system was also comprehensively restored, including the recovering of its two enormous single-rise wind reservoirs and the blower’s static reservoir. The external curtain valve regulators were all restored, the flexible wind line connections under each chest were replaced, and the Récit’s tremulant unit was refurbished. The original nine-stage expression motor was replaced with a new pneumatic whiffletree-type unit with 16 stages.

Opus 1024’s pipework was cleaned and repaired as needed in our pipe shop. We experimented with softening the Grand-Orgue’s 8 Montre stop for a less overbearing presence but its already-smooth tone only became more flute-like. We found ourselves working at cross purposes with this stop’s nature, having been built to a large scale from heavy lead and voiced with wide slots as well as leathered upper lips. We reduced the strength of the stop only slightly but removed the leather from the upper lips, improving the pipes’ tone and speech. We also recast the Grand-Orgue 8 Salicional—its original voicing sounded more like a Dulciana with little intensity or specific color­—to produce a rich string tone with enough presence to color the other foundation stops.

New II–III Fourniture and 8 Trompette stops were added to the Grand-Orgue, with the Trompette extended to 16 pitch to play in the Pédale. Our goal for these new stops was to sound as if they might have been part of the original instrument, and in this respect, the composition of the new mixture might seem conservative by modern standards. The scaling and breaks for the Fourniture were developed after studying mixture stops in other Casavants from the same era as well as the Grand-Orgue’s 2Doublette. Breaks occur at every C after the third rank enters at c13, while the scaling of the individual ranks follows a halving ratio progression that slows considerably as the pitch ascends over ¼.

The new 8 Trompette was modeled after Casavant examples from the 1920s (including the 8 Trompette in the Récit) and has tapered shallots with long, narrow triangular openings and leathered faces in the bass octaves. The spotted metal resonators were built to a generous scale (8C = 5′′Ø) and are harmonic starting at f42. Our harmonic-length resonators for new stops usually follow the same scale as their non-harmonic counterpart of the same length. Put another way, the first harmonic resonator is the same length and diameter as the natural length pipe one octave lower. Casavant’s harmonic-length resonators in the mid-1920s, however, employed narrower resonators; there is still a jump in diameter transitioning from natural to harmonic length but the increase is roughly eight pipes larger rather than a full octave (or twelve pipes).

Space within the instrument was limited from the outset, and adding two new stops was a feat in packaging. The first seven pipes of the Pédale 16 Flûte ouverte were originally laid horizontally from the floor to the sloping ceiling at the back of the chamber but from there, the stop continued as a wall of vertical wooden pipes beside the Grand-Orgue and finished up with the smallest pipes arranged vertically behind the Grand-Orgue’s passage board. To make way for the new 16-8 Trompette rank, the vertical pipes alongside the Grand-Orgue were relocated to lie horizontally within the chamber as well as at the base of the triforium arch at the very front of the instrument. Having now opened up a corridor beside the Grand-Orgue, the 16-8 Trompette rank was installed here on two wind chests with most of the 16 octave mitred to fit under the chamber’s sloping roofline. The new II–III Fourniture stop is likewise located at the front of the instrument under the triforium arch, where it sits above one of the 16 Flûte’s horizontal pipes.

The console’s original pedalboard had a compass of 30 notes and, further, did not radiate as much as an American Guild of Organists standard pedalboard.  The console was too narrow to accept a new 32-note pedalboard so we rebuilt the console’s chassis to be 8 inches wider, providing space for additional drawknobs in the process. The original expression pedal assembly was considerably offset with the Récit pedal lining up with note a#23 on the pedalboard. We rebuilt the expression pedal assembly to fit into its current central location, conforming to AGO standards, while its frame and pedals were also recovered with new chrome. The console was fitted with new thumb pistons and dome-shaped toe pistons as well as contrasting ebony and Pau Ferro oblique draw knobs to resemble the originals. Opus 1024’s two original pedal ranks were provided with two additional pipes each to correspond with the new pedalboard’s 32-note compass. The enlarged console returned to the cathedral on a new two-piece platform, enabling its movement throughout the sanctuary.

The console features 46 draw knobs for the sanctuary organ’s stops, couplers, and other ancillary controls. Once the gallery organ has been rebuilt, the sanctuary console will be ready to play the gallery organ blindly through a common piston system with 300 levels of memory. The row of 34 tilting tablets above the Récit manual will permit the gallery organ’s four manual divisions to be coupled as desired to the sanctuary console’s two manuals and pedal. Registrations for the gallery organ will be programmed in advance on general pistons at the gallery console but once done, the gallery stops can be brought into play at the sanctuary console by activating the “Appel Tribune” tablet and using the same general pistons. Aside from multiple memory levels, the rebuilt sanctuary console offers a general piston sequencer, four programmable Crescendo sequences of 30 stages each, and record-playback capability.

After reinstalling the organ’s restored components and testing the instrument’s mechanisms, the instrument’s voicing was thoroughly reviewed and adjusted as needed. Tonal changes to the 1924 materials were kept to a minimum aside from the changes mentioned earlier, but all of the organ’s original stops were carefully adjusted for improved consistency and blend. The voicing for the new II–III Fourniture and 16-8 Trompette was meticulous to ensure these new stops built smoothly on the instrument’s fortissimo without sacrificing color or excitement.

The restoration and enlargement of Opus 1024 was carried out on an expedited timeline, and the first sounds after the organ’s return to the cathedral were heard in February 2015. The renewed instrument was first heard by the public a few weeks later on Easter Sunday (April 5) when the organ was rededicated and blessed by the Archbishop of Québec, His Emmence Gérald Cyprien Lacroix. M. d’Anjou, the cathedral’s titular organist, then played a short recital that demonstrated the organ’s graceful versatility, its vivid palette of colors, and, when needed, its grand presence. Since then, the instrument has been heard regularly within the cathedral’s liturgy as well as a concert instrument in accompanimental and solo roles. Orgues Létourneau is honored to have been selected for this prestigious restoration project, and we expect our work to renew this elegant instrument will serve the cathedral for decades to come. It was our distinct pleasure during the project to work closely with Marc d’Anjou, Gilles Gignac, and Monsignor Dénis Bélanger at the cathedral, and we would like to take this opportunity to thank them for their support and assistance at every turn.

 

Casavant Freres, Opus 1024 (1924), restored, enlarged, and revoiced by Orgues LОtourneau (2014)

Grand-Orgue

16 Bourdon 68 pipes

8 Montre 68 pipes

8 Flûte harmonique 68 pipes

8 Salicional 68 pipes

8 Bourdon 68 pipes

4 Prestant 68 pipes

223 Quinte 68 pipes

2 Doublette 61 pipes

II–III Fourniture (new) 183 pipes

8 Trompette (new) 68 pipes

Recit expressif

16 Quintaton 68 pipes

8 Principal 68 pipes

8 Viole de gambe 68 pipes

8 Voix céleste (TC) 56 pipes

8 Mélodie 68 pipes

4 Violon 68 pipes

4 Flûte douce 68 pipes

223 Nazard 61 pipes

2 Octavin 61 pipes

135 Tierce 61 pipes

8 Trompette 68 pipes

8 Hautbois 68 pipes

8 Voix humaine 68 pipes

Trémolo

Pedale

32 Flûte (resultant)

16 Flûte ouverte 32 pipes

16 Bourdon 32 pipes

8 Flûte (ext 16 Flûte) 12 pipes 

8 Bourdon (ext 16 Bourdon) 12 pipes

4 Flûte (new, ext 8 Flûte) 12 pipes

16 Bombarde (ext, Gr-O 8′) 12 pipes

8 Trompette (fr Gr-O)

 

Couplers

Gr-Orgue à la Pédale

Gr-Orgue aigu à la Pédale

Récit à la Pédale

Récit aigu à la Pédale

Gr-Orgue unisson muet

Gr-Orgue grave

Gr-Orgue aigu

Récit grave au Gr-Orgue

Récit au Gr-Orgue

Récit aigu au Gr-Orgue

Récit unisson muet

Récit grave

Récit aigu

 

Accessories

10 General pistons

6 Grand-Orgue pistons

6 Récit pistons

6 Pédale pistons

100 levels of memory

Récit expression shoe

Crescendo shoe

3 Tutti adjustable pistons

Transposer

Record/Playback mechanism

 

The console is prepared to play the gallery organ once it has been rebuilt at some point in the future. The gallery organ stops will be accessible via the General pistons plus the Tutti and Crescendo settings.  There are tilting tablet couplers for each of the gallery organ’s divisions, allowing them to be coupled as desired to the chancel console’s two manuals at 16, 8′, and 4. Also included is an “Unification des expressions” (All Swells to Swell) control plus ventils for both the gallery and chancel organs.

 

D. B. Johnson Memorial Organ, Aeolian-Skinner Opus 1257, Winthrop University, Rock Hill, South Carolina: Restoration by Létourneau Pipe Organs

David Lowry and Andrew Forrest
Files
Default

Winthrop University began in 1886 in Columbia, South Carolina as the Winthrop Training School, to train women teachers. Robert Winthrop, chair of the Peabody Foundation in Boston, was the philanthropist who made the effort possible, with a generous gift of $1,500, plus a personal check for $50 for books to David Bancroft Johnson, the Columbia Superintendent of Schools, who was the school’s mentor. The state legislature soon found reason to establish a Normal and Industrial School for Women, and in 1895, Rock Hill was the chosen city. Winthrop’s name was retained. Some decades later the name was changed to Winthrop State College for Women. Eventually it became Winthrop College. Men were admitted in 1974, and a few years later the name changed to Winthrop University. Some 6,500 students at bachelor and master degree levels populate the campus today. The Department of Music is in the College of Visual and Performing Arts.
The College Auditorium and Conservatory of Music (the wording engraved in stone high up on the outside façade) were built in 1938–39 with funds from the WPA (Work Projects Administration). For fourteen years the concept of an organ for the College Auditorium (later designated the James F. Byrnes Auditorium) was a dream of the music department head, Dr. Walter B. Roberts. Under Roberts’ guidance, alumni raised $15,000, and the State of South Carolina appropriated $35,000. Ultimately, the 1952 contract with the Aeolian-Skinner Organ Company of Boston, Massachusetts, was for $59,865. Some months later another $3,000 was applied to the contract for the 32′ Contre Basse. The Class of 1914 (which in that fateful year was so penniless that it was unable to leave a class gift) achieved its goal in 1955 by donating $1,400 for the Deagan chime stop. The total of the initial expenditure added up to $64,265.
A 1951 letter from G. Donald Harrison, president and tonal director of the Aeolian-Skinner Organ Company, thanks Dr. Roberts for the invitation to design an organ for Winthrop, but Harrison goes on to say:

. . . as the college is a state school, bids will be necessary. I feel that in view of this it would be useless for us to put in a bid as we are bound to be the highest bidder with absolutely no chance of landing the contract.
President Sims just a week later, July 17, responded that

. . . the determination of which organ offered the most for the price could not be made on a mere dollar basis . . . I cannot guarantee that the committee will eventually select the organ you submit, still I do want you to feel that any proposal you make will receive careful consideration . . .
A month later, Harrison sent a specification of the proposed instrument and a justification of the tonal design that reflects the philosophy now known as “American Classic.”

Fifteen or more years ago, I developed a type of organ which combined both Classical and Romantic material in one instrument, the sole idea being to produce an organ that was capable of giving authentic renditions of all types of worthwhile organ music and an instrument that would suit players such as Virgil Fox, on the one hand, and Professor Fritz Heitmann at the Berlin Dom, on the other.

Harrison himself was in the auditorium in August 1955 for the final voicing of the organ. It was ten months later that Harrison died in his apartment in New York City, while finishing the rebuilding of the E. M. Skinner organ (Opus 205A) in St. Thomas Church, Fifth Avenue.
Today the D. B. Johnson Memorial organ stands as one of the few Aeolian-Skinner organs with Harrison’s signature that is not a rebuild of a previous instrument. It reflects Harrison’s 1950s concept of what his American Classic sound should be, and he obviously took advantage of calculating his design for the 3,500-seat space, which boasts a two-second reverberation time. Virgil Fox played the inaugural recitals November 2 and 3, 1955.
For the first ten years after the installation, the college organists (a title no longer used) were Jeannette Roth, Wilbur Sheridan, Wilmer Hayden Welsh, and George Klump. David M. Lowry became college organist in 1965. Lowry became professor emeritus in 1996, and has remained the part-time organ professor since. Many undergraduate and graduate students have performed their degree recitals on the Byrnes Auditorium organ. Lowry has been heard in nearly 100 performances—solo recitals, lecture-recitals, ensemble concerts, symphony orchestra programs, and the annual Festival of Carols.
The roster of guest artists on the organ is remarkable, due greatly to the support of Dr. Roberts for its first few years, then with the continued support of Dr. Jess T. Casey for over thirty years. That list includes Marie-Claire Alain, Robert Anderson, Robert Baker, David Craighead, Catharine Crozier, Virgil Fox, Fernando Germani, Jerald Hamilton, Yuko Hayashi, Anton Heiller, Paul Jenkins, Wilma Jensen, Marilyn Keiser, Jean Langlais, Simon Preston, Alexander Schreiner, Larry Smith, Murray Somerville, John Chappell Stowe, and many others.
As with the purchase of the instrument, the search for a builder to restore the instrument fell into a category of specialized work where the low bid did not have to be the winner. A panel of judges read the proposals, and the voting for the winner was under the supervision of a state agent. Létourneau Pipe Organs of Saint-Hyacinthe, Québec won the contract. In 1967, Fernand Létourneau, at just 23 years of age, was present in Rock Hill installing an organ for another firm when Marie-Claire Alain played a recital in Byrnes Auditorium. Following the concert, he came to a private party for her and engaged her in conversation about Dom Bédos de Celles. It was a significant moment in his life that he has never forgotten, and he made it very clear to Winthrop authorities that he was in total agreement about not changing anything tonally on the organ. Andrew Forrest, artistic director of the firm, achieved total cooperation with all the artisans in the project.
Today the restored organ stands as one of the country’s prized historic instruments, in that the number of nearly pure G. Donald Harrison signature organs becomes ever more rare.
—David Lowry, DMA, HonRSCM
Professor of Music Emeritus
Curator for the Restoration

The Aeolian-Skinner Organ Company’s tumultuous history is well documented and the cast of characters still seems familiar nearly forty years after the company’s demise. The books The American Classic Organ and Aeolian-Skinner Remembered by Charles Callahan vividly illustrate the ideas, external pressures and internal tensions that shaped the company until 1972 and, indeed, there remain many parallels in the daily machinations of an organ shop over thirty-five years later. Specifically, The American Classic Organ provides helpful insights into the motivations of G. Donald Harrison, the company’s tonal director from 1933 through to his death in 1956. Jonathan Ambrosino has also done much to document Aeolian-Skinner and Harrison’s rise to prominence through his writings for numerous journals and his scholarly liner notes for JAV Recordings’ series of recordings on vintage Aeolian-Skinners.
Aeolian-Skinner’s Opus 1257 in Byrnes Auditorium at Winthrop University is a remarkably unaltered example of Aeolian-Skinner’s work in 1955. Harrison’s work in the 1950s was marked by a number of prestigious rebuilding projects, and against this backdrop, the Winthrop contract represented a real opportunity for Harrison to design a large instrument free from outside influences. All decisions regarding the organ’s tonal design, from its stoplist to scaling and winding details, were left to Harrison, and the console plate bearing his signature indicates a particular interest in the final result. Following the organ’s installation during the early summer of 1955, Harrison traveled to Rock Hill to personally supervise the tonal finishing for several days during the month of August. As such, the D. B. Johnson Memorial Organ is a landmark instrument: in addition to its celebrated status as a superbly effective pipe organ, it also represents one of the last significant Aeolian-Skinners supervised from beginning to end by Harrison.
Jumping ahead to the 21st century, the D. B. Johnson Memorial Organ was still in remarkably good form some 52 years after it was completed, thanks to Professor of Music Emeritus David Lowry’s efforts. Fundraising for the restoration was generously provided by Winthrop alumni plus local individuals and businesses, with the project being spearheaded by Shirley Fishburne and David White and the university’s Alumni Association and Development Offices. An in-house recording of the instrument’s au revoir bash on May 21, 2007 gives a good account of repertoire from Bach to Howells to Diemer, rendered with conviction and color. Nonetheless, the instrument was in growing need of attention by then: the console’s pistons were temperamental at best, one of the pneumatic swell engines had failed entirely, and with increasing regularity, individual notes or entire stops had become unreliable or outright inoperative. From the very beginning of the project, it was imperative that the instrument remain tonally unchanged, and our approach here was to treat Opus 1257 with great deference. Largely a mechanical restoration, the instrument is today ready to serve for additional decades as an acclaimed concert and teaching instrument.
The most obvious indicators of the recent work are the discrete changes to the instrument’s four-manual console, though the console had also undergone some earlier restorative efforts. The organ’s original remote combination machines had been replaced by a primitive Solid State Logic (now Solid State Organ Systems) capture system in the early 1980s—following repeated floods in the auditorium basement—and three of the console’s four manuals had also been recovered with new ivories. As part of the 2007–2009 restoration project, the console was upgraded with new solid-state equipment, including capture and coupling systems. The console now boasts 256 levels of memory, a USB-based system for storing and recalling memory levels, the usual complement of general and divisional pistons, and a new general piston sequencer. The new coupling system also permits a Great–Choir manual transfer and restores the console’s All Swells to Swell feature (now programmable on general pistons as desired). At the request of David Lowry, one new coupler was added for additional flexibility, the Positiv to Choir 16′.
The console’s original silver wire and bronze plate contact system was restored with new silver wire contacts, while the four manuals’ bushings were replaced and the ivory key coverings cleaned and polished. New thumb pistons and toe pistons—in the Aeolian-Skinner style—were provided, using the same contact mechanism as the originals, while the original pneumatic stopknob actions were replaced with new electro-repulsion solenoids from Harris Precision Products. The walnut console shell and elegant dog-leg bench were both stripped, repaired as needed and refinished.
The organ itself was dismantled in late May of 2007, and the console, reed stops, and other restorable components were packed and shipped to our workshops in Québec. All 8′ and smaller flue pipes were also removed from the chambers and packed carefully for storage in various locations within Byrnes Auditorium. Subsequent to the organ’s return, the chambers were cleaned and painted by John Dower and Company.
Once in our workshops, all of the organ’s various pneumatic actions were recovered with new leather, including wind reservoirs, concussion bellows, expression motors, pouchboards, note and stop primaries, and tremolo units. The organ’s reed stops were carefully dismantled, cleaned and measured; resonators were repaired as needed and then each stop was checked on a voicing jack. As much as possible, the existing reed tongues were reused, with new tongues being provided only where the existing tongue was damaged. The single exception to this was the bass octave of the Choir 16′ English Horn, which was revoiced to cure a chronic slow speech problem.
We returned to Winthrop University with the organ in October 2008 to begin reinstalling the organ’s many components. During this process, the two wind reservoirs that had proved impossible to remove were recovered with new leather, and all of the organ’s wind chests and wooden framing were wiped down. The organ’s flue pipes were also cleaned prior to reinstallation, with tuning scrolls being soldered closed and re-cut for the 16′ and 8′ octaves. The longest pipes of the 32′ Contre Basse extension had originally been mitered to fit under the chamber ceiling and were fitted with baling wire slings in the early 1960s for support, with the slings coming down through holes in the plaster ceiling above. To provide better access to the top of the chamber, we built a new access ladder and platform, and the mitered 32′ pipes were fitted with new twill tape slings. Again, the slings pass through the chamber ceiling to a sturdy metal frame in the attic above. The tuning scrolls on these large pipes had also, over time, succumbed to gravity and unrolled and ultimately proved impossible to salvage; these scrolls were cut off and custom-made tuning sleeves lined with felt were provided for tuning.
The organ’s wind system and electro-pneumatic windchests were then reassembled, with care taken to replace all wind trunk collars with new split leather gaskets. The organ was also entirely rewired within the chambers, joining the new SSOS coupling system to the new Reisner electro-magnets that were retrofitted in our workshops. Wind pressures throughout the organ were restored to those listed in the 1955 specification, as the Swell and Choir divisions had slipped slightly. The wind reservoir feeding the 8′–4′ Trompette en chamade rank and the Pedal 16′–8′–4′ Bombarde unit was, however, restored to the 87⁄8″ pressure as it was when we began our restoration.
Following the reassembly of the instrument and testing, a team of voicers began their work that continued into January 2009. All of the organ’s 3,820 pipes were thoroughly regulated for proper volume and speech, but few alterations were made in cases where there were obvious problems between adjacent pipes. New adjustable toe blocks were fitted for the bass octaves of the Great 16′ Contra Geigen and the Swell 16′ Flauto Dolce, allowing much finer regulation for these pipes. The relatively simple but time-consuming regulation process yielded some unexpected results, with particular improvements in the clarity and overall refinement of the 32′ and 16′ registers.
A detailed inventory was also taken on site of most flue stops in an effort to flesh out G. Donald Harrison’s scaling practices at the end of his career. Generally, the pipework confirms that Harrison favored narrow basses and broader trebles, coupled with a fine, refined style of voicing. Reed stops are generally small to average in scale—the 8′ Trompette en chamade and the Swell 8′ Trompette were built to the same scale!—but are on generally high wind pressures. A surprising variety of shallot types were also used to good effect.
Prior to our restoration, two tonal alterations had been made to Opus 1257. The first change was a revision of the Swell III-rank Plein jeu, as the original was felt to be insufficient against the powerful Swell reed chorus. Modified in 1965 by Arthur Birchall, the mixture was transposed up a fifth, going from 2′ pitch to 11⁄3′ pitch. From a detailed examination of the pipes, it appears that as many of the 1955 pipes were reused as was practical, requiring but 31 new pipes to complete the revised stop. Despite its non-original composition, our restoration of the organ left the III-rank Plein jeu in its 1965 form, as the mixture is a good fit with the rest of organ and in particular, addresses the Swell reeds in a telling fashion.
The 8′–4′ Trompette en chamade was also modified during the 1970s by moving up the break between natural and harmonic-length resonators, with the first harmonic pipe moving from c25 to f#31. This cured persistent tuning problems in this range and what David Lowry remembers as “an unfortunate tone akin to a New York City taxi cab.” At the same time, the unit chest for this stop was also moved to the very front of the Great-Pedal chamber from its original location beside the Pedal main chest for better projection. An angled plywood baffle was also added above the pipes, providing protection from dust contamination and directing sound out of the chamber.
In conclusion, our work on the D. B. Johnson Memorial Organ at Winthrop University is one of the most interesting and best-documented restorations we’ve been privileged to carry out in recent years. Opus 1257 is a persuasive, musical instrument through which Harrison’s tonal philosophy shines; it has much to offer today’s tonal discussions. We are grateful to have had this opportunity to restore and perhaps more importantly, learn from this magnificent pipe organ.
— Andrew Forrest, Artistic Director
Létourneau Pipe Organs

GREAT (3-3⁄4″ wind pressure)
16′ Contra Geigen
8′ Diapason
8′ Spitz Principal
8′ Holzflöte
4′ Principal
4′ Rohrflöte
2-2⁄3′ Quint
2′ Super Octave
1′ Fourniture IV
2′ Cornet III–VI
8′ Trompette en chamade (Pos)
4′ Clairon en chamade (Pos)
Chimes (Ch)

SWELL (expressive) (6″ w.p.)
16′ Flauto Dolce (ext)
8′ Geigen Principal
8′ Stopped Diapason
8′ Viole de Gambe
8′ Viole Celeste
8′ Flauto Dolce
8′ Flute Celeste (t.c.)
4′ Prestant
4′ Flauto Traverso
2′ Fifteenth
1-1⁄3′ Plein jeu III
16′ Fagot
8′ Trompette
8′ Hautbois
8′ Vox Humana
4′ Clairon
Tremulant

CHOIR (expressive) (5″ w.p.)
8′ Viola
8′ Viola Celeste
8′ Dulciana
8′ Concert Flute
4′ Prestant
4′ Flûte harmonique
2-2⁄3′ Sesquialtera II
16′ English Horn
8′ Cromorne
4′ Rohr Schalmei
Tremulant
8′ Trompette en chamade (Pos)
4′ Clairon en chamade (Pos)
Chimes

POSITIV (3″ w.p.)
8′ Nason Flute
4′ Koppelflöte
2′ Principal
1-3⁄5′ Tierce
1-1⁄3′ Larigot
1⁄4′ Cymbel III
8′ Trompette en chamade (8-7⁄8″ w.p.)
4′ Clairon en chamade (ext) (8-7⁄8″ w.p.)

PEDAL (5″ w.p.)
32′ Contre Basse (ext Gt 16′) (6-1⁄4″ w.p.)
16′ Contre Basse (6-1⁄4″ w.p.)
16′ Geigen (Gt)
16′ Bourdon
16′ Flauto Dolce (Sw)
8′ Principal
8′ Gedeckt Pommer
4′ Choral Bass
4′ Nachthorn
2′ Blockflöte
2-2⁄3′ Mixture IV
32′ Fagot (half-length ext Sw 16′)
16′ Bombarde (87⁄8″ w.p.)
16′ Fagot (Sw)
8′ Trompette (ext) (87⁄8″ w.p.)
4′ Clairon (ext) (87⁄8″ w.p.)
8′ Trompette en chamade (Pos)
Chimes (Ch)

Mixture Compositions (as of 2009):

Great IV Fourniture:
c1 to b12: 22-26-29-33
c13 to b24: 19-22-26-29
c25 to b36: 15-19-22-26
c37 to b48: 12-15-19-22
c49 to f#55: 8-12-15-19
g56 to c61: 5 - 8-12-15

Great III–VI Cornet:
c1 to f18: 15-17-19
f#19 to f42: 12-15-17-19
f#43 to f54: 8-12-15-17
f#55 to c61: 5-8-8-10-12-15

Swell III Plein jeu:
c1 to f18: 19-22-26
f#19 to f42: 15-19-22
f#43 to f54: 12-15-19
f#55 to c61: 8-12-15

Positiv III Cymbel:
c1 to f6: 36-40-43
f#7 to b12: 33-36-40
c13 to f18: 29-33-36
f#19 to b24: 26-29-33
c25 to f30: 22-26-29
f#31 to b36: 19-22-26
c37 to f42: 15-19-22
f#43 to b48: 12-15-19
c49 to c61: 8-12-15

Pedal IV Mixture:
c1 to g32: 19-22-26-29

Current Issue