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
(138.) The pressure of steam in the cylinder of an engine is always
less than the pressure of steam in the boiler, owing to the
obstructions which it encounters in its passage through the steam
pipes and valves. The difference between these pressures will depend
upon the form and magnitude of the passages: the straighter and wider
they are, the less the difference will be; if they are contracted and
subject to bends, especially to angular inflexions, the steam will be
considerably diminished in its pressure before it reaches the
cylinder. The throttle valve placed in the steam pipe may also be so
managed as to diminish the pressure of steam in the cylinder to any
extent: this effect, which is well understood by practical engineers,
is called _wire-drawing_ the steam. By such means it is evidently
possible for the steam in the boiler to have any degree of
high-pressure while the engine is worked at any degree of low
pressure. Since, however, the pressure of the steam in the cylinder is
a material element in the performance of the engine, the magnitude,
position, and shape of the steam pipe and of the valves are a matter
of considerable practical importance. But theory furnishes us with
little more than very general principles to guide us. One practical
rule which has been adopted is, to make the diameter of the steam pipe
about one fifth of that of the cylinder: by this means the area of the
transverse action of the pipe will be one twenty-fifth part of the
superficial magnitude of the piston; and, since the same quantity of
steam per minute must flow through this pipe as through the cylinder,
it follows that the velocity of the steam, in passing through the
steam pipe, will be twenty-five times the velocity of the piston.
(139.) Another rule which has been adopted is, to allow a square inch
of magnitude, in the section of the steam pipe, for each horse-power
of the engine.
The result of this and all similar rules is, that the steam should
always pass through the steam pipe with the same velocity, whatever be
the power of the engine.
In engines of the same power, the piston will have very different
velocities in the cylinder, according to the effective pressure of the
steam, and the proportions and capacity of the cylinder. It is clear
from what has been already explained, that, when the power is the
same, the same actual quantity of water, in the form of steam, must
pass through the cylinder per minute: but, if the steam be used with a
considerable pressure, being in a condensed state, the same weight of
it will occupy a less space; and consequently the cylinders of
high-pressure engines are smaller than those of the same power in
low-pressure engines: the magnitude of the cylinder and the piston
therefore, as well as the velocity of the latter, will depend first
upon the pressure of the steam.
Public-domain text, read in full here on John Shaqi.
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