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
[Footnote 33: In boilers constructed for stationary purposes, or for
steam navigation, the steam-pipe, after it has passed through the
blowing box, is continued and made to form a series of returned flues
over the boiler, so as to take up the waste heat after it has passed
the boiler, and before it reaches the chimney. But in locomotive
engines for common roads, it has been found by experience, that the
power gained by the waste heat is not sufficient to propel the weight
of the material necessary for taking it up.]
So far as the removal of all inconvenience arising from noise, this
contrivance has been proved by experience to be perfectly
effectual.[34]
[Footnote 34: See Report of the Commons.]
In all boilers, the process of violent ebullition causes a state of
agitation in the water, and a number of counter currents, by which, as
the steam is disengaged from the surface of the water, it takes with
it a considerable quantity of water in mechanical mixture. If this be
carried through the cylinders, since it possesses none of the
qualities of steam, and adds nothing to the power of the vapour with
which it is combined, it causes an extensive waste of heat and water,
and produces other injurious effects. In every boiler therefore, some
means should be provided for the separation of the water thus
suspended in the steam, before the steam is conducted to the cylinder.
In ordinary plate boilers, the large space which remains above the
surface of the water serves this purpose. The steam being there
subject to no agitation or disturbance, the water mechanically
suspended in it descends by its own gravity, and leaves pure steam in
the upper part. In the small tubular boilers, this has been a matter,
however, of greater difficulty. The contracted spaces in which the
ebullition takes place, causes the water to be mixed with the steam in
a greater quantity than could happen in common plate boilers: and the
want of the same steam-room renders the separation of the water from
the steam a matter of some difficulty. These inconveniences have been
overcome by a succession of contrivances of great ingenuity. I have
already described the rapid and regular circulation effected by the
arrangement of the tubes. By this a regularity in the currents is
established, which alone has a tendency to diminish the mixture of
water with the steam. But in addition to this, a most effectual method
of separation is provided in the vessel I, which is a strong iron
cylinder of some magnitude, placed out of the immediate influence of
the fire. A partial separation of the steam from the water takes place
in the cylinder H; and the steam with the water mechanically suspended
in it, technically called moist steam, rises into the _separator_ I.
Here, being free from all agitation and currents, and being, in fact,
quiescent, the particles of water fall to the bottom, while the pure
steam remains at the top. This separator, therefore, serves all the
Public-domain text, read in full here on John Shaqi.
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