The Recent Revolution in Organ Building: Being an Account of Modern DevelopmentsMiller, George Laing
Philosophy
The Recent Revolution in Organ Building: Being an Account of Modern Developments
Miller, George Laing
Organ (Musical instrument) -- Construction
In the middle of the last century all organs were voiced on light wind
pressure,[3] mostly from an inch and a half to three inches. True, the
celebrated builder, William Hill, placed in his organ at Birmingham
Town Hall, England, so early as 1833, a Tuba voiced on about eleven
inches wind pressure, and Willis, Cavaille-Coll, Gray and Davison, and
others, adopted high pressures for an occasional reed stop in their
largest organs; yet ninety-nine per cent. of the organs built
throughout the world were voiced on pressures not exceeding three and
one-half inches.
In those days most organs that were met with demanded a finger force of
some twenty ounces before the keys could be depressed, when coupled,
and it was no uncommon thing for the organist to have to exert a
pressure of fifty ounces or more on the bass keys. (The present
standard is between three and four ounces. We are acquainted with an
organ in New York City which requires a pressure of no less than forty
ounces to depress the bass keys.)
The manual compass on these organs seldom extended higher than f|2| or
g|3|, though it often went down to GG.[4]
It was common to omit notes from the lower octave for economy's sake,
and many stops were habitually left destitute of their bottom octaves
altogether. Frequently the less important keyboards would not descend
farther than tenor C.[5]
The compass of the pedal board (when there was a pedal board at all)
varied anywhere from one octave to about two and a quarter octaves.
The pedal keys were almost invariably straight and the pedal boards
flat.
[Illustration: Fig. 4. Nomenclature of Organ Keyboard]
[1] The invention of the pneumatic lever has been claimed for Mr.
Hamilton, of Edinburgh, Scotland. It is, however, generally credited
to Barker and known as the "Barker pneumatic lever." (See also note
about Joseph Booth, page 129.)
[2] Barker was also associated with Peschard, who in 1864 patented
jointly with him the electro-pneumatic action. (See page 37.)
[3] The pressure of the wind supplied by the old horizontal bellows is
regulated by the weights placed on top. The amount of this pressure is
measured by a wind-gauge or anemometer invented by Christian Foermer
about 1677. It is a bent glass tube, double U shaped, into which a
little water is poured. On placing one end of it fitted with a socket
into one of the holes in the wind-chest (in place of a pipe) and
admitting the wind from the bellows the water is forced up the tube,
and the difference between the level of the surface of the water in the
two legs of the tube is measured in inches. Thus, we always talk of
the pressure of wind in an organ as being so many inches.
[4] The organ in Great Homer Street Wesleyan Chapel, Liverpool,
England, had manuals extending down to CCC. It was built for a man who
could not play the pedals and thus obtained 16 ft. tone from the keys.
The old gallery organ in Trinity Church, New York, also has this
compass.
Public-domain text, read in full here on John Shaqi.
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