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
This circumstance produced an acquaintance between him and the
celebrated Dr. Robison, then a student in Glasgow, who directed Watt's
attention to the steam engine. In his first experiments he used steam
of a high-pressure; but found it attended with so much danger of
bursting the boiler, and difficulty of keeping the joints tight, and
other objections, that he relinquished the inquiry at that time.
(46.) In the winter of 1763, Watt was employed to repair the model of
an atmospheric engine, belonging to the natural philosophy class in
the university--a circumstance which again turned his attention to the
subject of the steam engine. He found the consumption of steam in
working this model so great, that he inferred that the quantity
wasted, must have had a very large proportion to that used in working
the piston. His first conclusion was, that the material of the
cylinder (brass) was too good a conductor of heat, and that much was
thereby lost. He made some experiments, accordingly, with wooden
cylinders, soaked in linseed oil, which, however, he soon laid aside.
Further consideration convinced him that a prodigious waste of steam
was essential to the very principle of the atmospheric engine. This
will be easily understood.
When the steam has filled the cylinder so as to balance the
atmospheric pressure on the piston, the cylinder must have the same
temperature as the steam itself. Now, on introducing the condensing
jet, the steam mixed with this water forms a mass of hot water in the
bottom of the cylinder. This water, not being under the atmospheric
pressure, boils at very low temperatures, and produces a vapour which
resists the descent of the piston.
Public-domain text, read in full here on John Shaqi.
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