Air brakes and self-opening and self-closing doors on cars are
operated by means of compression pumps. The laying of bridge and pier
foundations, in fact all work which must be done under water, is
possible only through the agency of compression pumps. Those who have
visited mines, and have gone into the heart of the underground
labyrinth, know how difficult it is for fresh air to make its way to
the miners. Compression pumps have eliminated this difficulty, and
to-day fresh air is constantly pumped into the mines to supply the
laborers there. Agricultural methods also have been modified by the
compression pump. The spraying of trees (Fig. 143), formerly done
slowly and laboriously, is now a relatively simple matter.
[Illustration: FIG. 143.--Spraying trees by means of a compression
pump.]
190. The Bicycle Pump. The bicycle pump is the best known of all
compression pumps. Here, as in other pumps of its type, the valves
open inward rather than outward. When the piston is lowered,
compressed air is driven through the rubber tubing, pushes open an
inward-opening valve in the tire, and thus enters the tire. When the
piston is raised, the lower valve closes, the upper valve is opened
by atmospheric pressure, and air from outside enters the cylinder; the
next stroke of the piston drives a fresh supply of air into the tire,
which thus in time becomes inflated. In most cheap bicycle pumps, the
piston valve is replaced by a soft piece of leather so attached to the
piston that it allows air to slip around it and into the cylinder, but
prevents its escape from the cylinder (Fig. 144).
[Illustration: FIG. 144.--The bicycle foot pump.]
191. How a Man works under Water. Place one end of a piece of glass
tube in a vessel of water and notice that the water rises in the tube
(Fig. 145). Blow into the tube and see whether you can force the water
wholly or partially down the tube. If the tube is connected to a small
compression pump, sufficient air can be sent into the tube to cause
the water to sink and to keep the tube permanently clear of water.
This is, in brief, the principle employed for work under water. A
compression pump forces air through a tube into the chamber in which
men are to work (Fig. 146). The air thus furnished from above supplies
the workmen with oxygen, and by its pressure prevents water from
entering the chamber. When the task has been completed, the chamber is
raised and later lowered to a new position.
[Illustration: FIG. 145.--Water does not enter the tube as long as we
blow into it.]
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