The Steam Engine Explained and Illustrated (Seventh Edition): With an Account of Its Invention and Progressive Improvement, and Its Application to Navigation and Railways; Including Also a Memoir of WattLardner, Dionysius
History
The Steam Engine Explained and Illustrated (Seventh Edition): With an Account of Its Invention and Progressive Improvement, and Its Application to Navigation and Railways; Including Also a Memoir of Watt
Lardner, Dionysius
Steam-engines; Watt, James, 1736-1819
In the engines now described, this valve was frequently loaded at
the rate of from 60 to 80 lbs. on the square inch. As the boilers of
high-pressure engines were considered more liable to accidents from
bursting than those in which steam of a lower pressure was used,
greater precautions were taken against such effects. A second
safety-valve was provided, which was not left in the power of the
engine-man. By this means he had a power to diminish the pressure of
the steam, but could not increase it beyond the limit determined by
the valve which was removed from his interference. The greatest
cause of danger, however, arose from the water in the boiler being
consumed by evaporation faster than it was supplied; and therefore
falling below the level of the tube containing the furnace. To guard
against accidents arising from this circumstance, a hole was bored
in the boiler, at a certain depth, below which the water should not
be allowed to fall; and in this hole a plug of metal was soldered
with lead, or with some other metal, which would fuse at that
temperature which would expose the boiler to danger. Thus, in the
event of the water being exhausted, so that its level would fall
below the plug, the heat of the furnace would immediately melt the
solder, and the plug would fall out, affording a vent for the steam,
without allowing the boiler to burst. The mercurial steam-gauge,
already described, was also used as an additional security. When the
force of the steam exceeded the length of the column of mercury
which the tube would contain, the mercury would be blown out, and
the tube would give vent to the steam. The water by which the boiler
was replenished was forced into it by a pump worked by the engine.
In order to economise the heat, this water was contained in a tube
T, which surrounded the pipe H. As the waste steam, after working
the piston, passed off through H, it imparted a portion of its heat
to the water contained in the tube T, which was thus warmed to a
certain temperature before it was forced into the boiler by the
pump. Thus a part of the heat, which was originally [Pg328] carried
from the boiler in the form of steam, was returned again to the
boiler with the water with which it was fed.
It is evident that engines constructed in this manner may be
applied to all the purposes to which the condensing engines are
applicable.
Public-domain text, read in full here on John Shaqi.
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