Lives of Boulton and Watt. Principally from the Original Soho Mss.: Comprising also a history of the invention and introduction of the steam engineSmiles, Samuel
History
Lives of Boulton and Watt. Principally from the Original Soho Mss.: Comprising also a history of the invention and introduction of the steam engine
In order to follow the track of investigation pursued by Watt, it
is necessary for a moment to revert to the action of the Newcomen
pumping-engine. A beam, moving upon a centre, had affixed to one end
of it a chain attached to the piston of the pump, and at the other a
chain attached to a piston that fitted into the steam cylinder. It was
by driving this latter piston up and down the cylinder that the pump was
worked. To communicate the necessary movement to the piston, the steam
generated in a boiler was admitted to the bottom of the cylinder, forcing
out the air through a valve, when its pressure on the under side of the
piston counterbalanced the pressure of the atmosphere on its upper side.
The piston, thus placed between two equal forces, was drawn up to the top
of the cylinder by the greater weight of the pump-gear at the opposite
extremity of the beam. The steam, so far, only discharged the office which
was performed by the air it displaced; but, if the air had been allowed
to remain, the piston once at the top of the cylinder could not have
returned, being pressed as much by the atmosphere underneath as by the
atmosphere above it. The steam, on the contrary, which was admitted by
the exclusion of the air, _could be condensed_, and a vacuum created, by
injecting cold water through the bottom of the cylinder. The piston being
now unsupported, was forced down by the pressure of the atmosphere on its
upper surface. When the piston reached the bottom, the steam was again let
in, and the process was repeated. Such was the engine in ordinary use for
pumping water at the time that Watt begun his investigations.
Among his other experiments, he constructed a boiler which showed by
inspection the quantity of water evaporated in any given time, and the
quantity of steam used in every stroke of the engine. He was astonished
to discover that a _small_ quantity of water in the form of steam, heated
a _large_ quantity of cold water injected into the cylinder for the
purpose of cooling it; and upon further examination he ascertained that
steam heated _six times_ its weight of cold water to 212°, which was
the temperature of the steam itself. “Being struck with this remarkable
fact,” says Watt, “and not understanding the reason of it, I mentioned it
to my friend Dr. Black, who then explained to me his doctrine of latent
heat, which he had taught for some time before this period (the summer of
1764); but having myself been occupied by the pursuits of business, if I
had heard of it I had not attended to it, when I thus stumbled upon one
of the material facts by which that beautiful theory is supported.”[75]
[75] Watt’s notes to Robison’s Articles on ‘Steam and
Steam-engines.’
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