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
The work of Perkins and of Alban, like that of their predecessors,
Evans, Stevens, and Trevithick, was, however, the work of engineers
who were far ahead of their time. The general practice, up to the time
which marked the beginning of the modern "period of refinement," had
been but gradually approximating that just described. Higher pressures
were slowly approached; higher piston-speeds came slowly into use;
greater expansion was gradually adopted; the causes of losses of heat
were finally discovered, and steam-jacketing and external
non-conducting coverings were more and more generally applied as
builders became more familiar with their work. The "compound engine"
was now and then adopted; and each experiment, made with higher steam
and greater expansion, was more nearly successful than the last.
Finally, all these methods of securing economy became recognized, and
the reasons for their adoption became known. It then remained, as the
final step in this progression, to combine all these requisites of
economical working in a double-cylinder engine, steam-jacketed, well
protected by non-conducting coverings, working steam of high pressure,
and with considerable expansion at high piston-speed. This is now done
by the best builders.
One of the best examples of this type of engine is that constructed by
the sons of Jacob Perkins, who continued the work of their father
after his death. Their engines are single-acting, and the small or
high-pressure cylinder is placed on the top of the larger or
low-pressure cylinder. The valves are worked by rotating stems, and
the loss of heat and burning of packing incident to the use of the
common method are thus avoided. The stuffing-boxes are placed at the
end of long sleeves, closely surrounding the vertical valve-stems
also, and the water of condensation which collects in these sleeves is
an additional and thorough protection against excessively high
temperature at the packing. The piston-rings are made of the alloy
which has been found to require no lubrication.
Steam is usually worked at from 250 to 450 pounds, and is generated in
boilers composed of small tubes three inches in diameter and
three-eighths of an inch thick, which are tested under a pressure of
2,500 pounds per square inch. The safety-valve is usually loaded to
400 pounds. The boiler is fed with distilled water, obtained
principally by condensation of the exhaust-steam, any deficiency being
made up by the addition of water from a distilling apparatus. Under
these conditions, but 1-1/4 pound of coal is consumed per hour and per
horse-power.
Public-domain text, read in full here on John Shaqi.
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