The Steam Engine Familiarly Explained and Illustrated: With an historical sketch of its invention and progressive improvement; its applications to navigation and railways; with plain axioms for railway speculatorsLardner, Dionysius
History
The Steam Engine Familiarly Explained and Illustrated: With an historical sketch of its invention and progressive improvement; its applications to navigation and railways; with plain axioms for railway speculators
Lardner, Dionysius
Steam-engines -- Early works to 1850
An oval boiler, A (fig. 11.), is filled to about two thirds of its
entire capacity with water, through a valve B in the top, which opens
upwards, and is kept down by a lever carrying a sliding weight. The
pressure on the valve is regulated by moving the weight to or from B,
like the common steelyard. This boiler communicates with a cylinder,
C, by a syphon tube furnished with a stopcock at D. The cylinder C has
a valve F in the top, closed by a lever and weight similar to B, and a
tube with a stopcock G opening into the atmosphere. In this cylinder
is placed a hollow copper piston H, which moves freely in it, and
floats upon the water. Another tube forms a communication between the
bottom of this cylinder and the bottom of a close cylindrical vessel
I, called the _air-vessel_. In this tube is a valve at K, opening
_upwards_; also a pipe terminated in a funnel, and furnished with a
valve L, which opens _downwards_. From the lower part of the
air-vessel a tube proceeds, furnished also with a stopcock M, which is
continued to whatever height the water is to be raised.
Water being poured into the funnel, passes through the valve L, which
opens downwards; and filling the tube, ascends into the cylinder C,
carrying the floating piston H on its surface, and maintains the same
level in C which it has in the funnel. In this manner the cylinder C
may be filled to the level of the top of the funnel. In this process
the cock G should be left open, to allow the air in the cylinder to
escape as the water rises.
Let us now suppose that, a fire being placed beneath the boiler, steam
is being produced. On opening the cock D, and closing G, the steam,
flowing through the syphon tube into the top of the cylinder, presses
down the floating piston, and forces the water into the lower tube.
The passage at L being stopped, since L opens _downwards_, the water
forces open the valve K, and passes into the air-vessel I. When the
piston H has been forced to the bottom of the cylinder, the cock D is
closed, and G is opened, and the steam allowed to escape into the
atmosphere. The cylinder is then replenished from the funnel as
before; and the cock G being closed, and D opened, the process is
repeated, and more water forced into the air-vessel I.
Public-domain text, read in full here on John Shaqi.
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