Scientific American Supplement, No. 417, December 29, 1883 — John Shaqi
Scientific American Supplement, No. 417, December 29, 1883Various
Science
Scientific American Supplement, No. 417, December 29, 1883
Various
Science -- Periodicals
Another most important use of the same scientific fact, namely, the
properties of compressed air, is found in the sinking of foundations
below water. When the piers of a bridge, or other structure, had to be
placed in a deep stream, the old method was to drive a double row of
piles round the place and fill them in with clay, forming what is
called a cofferdam. The water was pumped out from the interior, and the
foundation laid in the open. This is always a very expensive process,
and in rapid streams is scarcely practicable. In recent times large
bottomless cases, called caissons, have been used, with tubes attached
to the roof, by which air can be forced into or out of the interior.
These caissons are brought to the site of the proposed pier, and are
there sunk. Where the bottom is loose sandy earth, the vacuum process,
as it is termed, is often employed; that is, the air is pumped out from
the interior, and the superincumbent pressure then causes the caisson
to sink and the earth to rise within it. But it is more usual to employ
what is called the plenum process, in which air under high pressure
is pumped into the caisson and expels the water, as in a diving bell.
Workmen then descend, entering through an air lock, and excavate the
ground at the bottom of the caisson, which sinks gradually as the
excavation continues. Under this system a length of some two miles of
quay wall is being constructed at Antwerp, far out in the channel of the
river Scheldt. Here the caissons are laid end to end with each other,
along the whole curve of the wall, and the masonry is built on the top
of them within a floating cofferdam of very ingenious construction.
Public-domain text, read in full here on John Shaqi.
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