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
To make it air-tight in the cylinder, it had been found necessary to
keep a quantity of water supplied above the piston. In the present
case, any of this water which might escape through the piston, or
between it and the cylinder, would boil, the cylinder being kept at
212°; and would thus, by the steam it would produce, vitiate the
vacuum. To avoid this inconvenience, Watt proposed to lubricate the
piston, and keep it air-tight, by employing melted wax and tallow.
Another inconvenience was still to be removed. On the descent of the
piston, the air which must then enter the cylinder would lower its
temperature; so that upon the next ascent, some of the steam which
would enter it would be condensed, and hence would arise a source of
waste. To remove this difficulty, Watt proposed to close the top of
the cylinder altogether by an air-tight and steam-tight cover,
allowing the piston-rod to play through a hole furnished with a
stuffing-box, and _to press down the piston by steam instead of the
atmosphere_.
This was the third step in this great invention, and one which
totally changed the character of the machine. It now became really a
_steam engine_ in every sense; for the pressure above the piston was
the elastic force of steam, and the vacuum below it was produced by
the condensation of steam; so that steam was used both directly and
indirectly as a moving power; whereas, in the atmospheric engine, the
indirect force of steam only was used, being adopted merely as an easy
method of producing a vacuum.
The last difficulty respecting the economy of heat which remained to
be removed, was the circumstance of the cylinder being liable to be
cooled on the external surface by the atmosphere. To obviate this, he
first proposed casing the cylinder in wood, that being a substance
which conducted heat slowly. He subsequently, however, adopted a
different method, and inclosed one cylinder within another, leaving a
space between them, which he kept constantly supplied with steam. Thus
the inner cylinder was kept continually at the temperature of the
steam which surrounded it. The outer cylinder was called the
_jacket_.[15]
[Footnote 15: It is a remarkable circumstance, that Watt used the same
means for keeping the cylinder hot as Newcomen used in his earlier
engines to cool it. (38.)]
(48.) Watt computed that in the atmospheric engine three times as much
heat was wasted in heating the cylinder, &c. as was spent in useful
effect. And, as by the improvements proposed by him nearly all this
waste was removed, he contemplated, and afterwards actually effected,
a saving of three fourths of the fuel.
Public-domain text, read in full here on John Shaqi.
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