A History of the Growth of the Steam-EngineThurston, Robert Henry
History
A History of the Growth of the Steam-Engine
Thurston, Robert Henry
Steam-engines -- History
After the death of Beighton, the atmospheric engine of Newcomen
retained its then standard form for many years, and came into
extensive use in all the mining districts, particularly in Cornwall,
and was also applied occasionally to the drainage of wet lands, to the
supply of water to towns, and it was even proposed by Hulls to be used
for ship-propulsion.
The proportions of the engines had been determined in a hap-hazard
way, and they were in many cases very unsafe. John Smeaton, the most
distinguished engineer of his time, finally, in 1769, experimentally
determined proper proportions, and built several of these engines of
very considerable size. He built his engines with steam-cylinders of
greater length of stroke than had been customary, and gave them such
dimensions as, by giving a greater excess of pressure on the
steam-side, enabled him to obtain a greatly-increased speed of piston.
The first of his new style of engine was erected at Long Benton, near
Newcastle-upon-Tyne, in 1774.
Fig. 21[31] illustrates its principal characteristic features. The
boiler is not shown.
[31] A fac-simile of a sketch in Galloway's "On the Steam-Engine,"
etc.
The steam is led to the engine through the pipe, _C_, and is regulated
by turning the cock in the receiver, _D_, which connects with the
steam-cylinder by the pipe, _E_, which latter pipe rises a little way
above the bottom of the cylinder, _F_, in order that it may not drain
off the injection-water into the steam-pipe and receiver.
The steam-cylinder, about ten feet in length, is fitted with a
carefully-made piston, _G_, having a flanch rising four or five inches
and extending completely around its circumference, and nearly in
contact with the interior surface of the cylinder. Between this flanch
and the cylinder is driven a "packing" of oakum, which is held in
place by weights; this prevents the leakage of air, water, or steam,
past the piston, as it rises and falls in the cylinder at each stroke
of the engine. The chain and piston-rod connect the piston to the
beam, _I I_. The arch-heads at each end of the beam keep the chains of
the piston-rod and the pump-rods perpendicular and in line.
[Illustration: FIG. 21.--Smeaton's Newcomen Engine.]
Public-domain text, read in full here on John Shaqi.
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