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
(39.) To understand the mechanism necessary to work the piston, let us
consider how the supply and condensation of steam must be regulated.
When the piston has been forced to the bottom of the cylinder by the
atmospheric pressure acting against a vacuum, in order to balance that
pressure, and enable it to be drawn up by the weight of the pump-rod,
it is necessary to introduce steam from the boiler. This is
accomplished by opening the cock R in the steam-pipe S. The steam
being thus introduced from the boiler, its pressure balances the
action of the atmosphere upon the piston, which is immediately drawn
to the top of the cylinder by the weight of the pump-rod D. It then
becomes necessary to condense this steam, in order to produce a
vacuum. To accomplish this the further supply of steam must be cut
off, which is done by closing the cock R. The supply of steam from the
boiler being thus suspended, the diffusion of cold water on the
external surface of the cylinder becomes necessary to condense the
steam within it. This was done by enclosing the cylinder within
another, leaving a space between them.[12] Into this space cold water
is allowed to flow from a cock M placed over it, which is supplied by
a pipe from the cistern N. This cistern is supplied with water by a
pump O, which is worked by the engine itself, from the beam above it.
[Footnote 12: The external cylinder is not represented in the
diagram.]
The cold water supplied from M, having filled the space between the
two cylinders, abstracts the heat from the inner one; and condensing
the steam, produces a vacuum, into which the piston is immediately
forced by the atmospheric pressure. Preparatory to the next descent,
the water which thus fills the space between the cylinders, and which
is warmed by the heat it has abstracted from the steam, must be
discharged, in order to give room for a fresh supply of cold water
from M. An aperture, furnished with a cock, is accordingly provided in
the bottom of the cylinder, through which the water is discharged into
the cistern L; and being warm, is adapted for the supply of the boiler
through T, as already mentioned.
The cock R being now again opened, steam is admitted below the piston,
which, as before, ascends, and the descent is again accomplished by
opening the cock M, admitting cold water between the cylinders, and
thereby condensing the steam below the piston.
The condensed steam, thus reduced to water, will collect in the bottom
of the cylinder, and resist the descent of the piston. It is,
therefore, necessary to provide an exit for it, which is done by a
valve opening _outwards_ into a tube which leads to the feeding
cistern L, into which the condensed steam is driven.
That the piston should continue to be air-tight, it was necessary to
keep a constant supply of water over it; this was done by a cock
similar to M, which allowed water to flow from the pipe M on the
piston.
Public-domain text, read in full here on John Shaqi.
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