Catechism of the locomotiveForney, Matthias N. (Matthias Nace)
Science
Catechism of the locomotive
Forney, Matthias N. (Matthias Nace)
Locomotives -- Handbooks, manuals, etc.
_Answer._ By referring to the motion-curves in fig. 128, it will be
seen that the steam-port is closed by the exhaust edge of the valve,
or compression begins some time before the piston reaches the end of
the stroke. The result is that the remaining portion of the cylinder,
through which the piston must move _after_ the port is closed to the
exhaust, is filled with steam of atmospheric pressure, or possibly
a little above that pressure. As this is confined in the cylinder,
it is compressed by the advance of the piston. If there was no room
between it and the cylinder at the end of the stroke, then either the
cylinder would be burst or the valve would lift so as to allow the
compressed steam to flow back into the steam-chest. The clearance and
the steam-passages, however, afford considerable room, into which
the confined steam can be compressed without danger of bursting the
cylinder, or of raising the slide-valve when there is steam in the
steam-chest. As the clearance spaces and steam-ways must be filled
with high-pressure steam at the beginning of each stroke, it must be
obtained either by taking a supply of “_live_”[58] steam from the
boiler, or by compressing into the clearance spaces the low-pressure
steam that still remained in the cylinder when the port was closed to
the exhaust. By the latter process, a certain quantity of steam is
saved at the expense of increased back pressure. It should be borne in
mind also that the total heat of the compressed steam increases with
its pressure, and as this latter approaches that in the boiler, the
temperature of the former must have been raised from that due to about
atmospheric pressure to nearer the temperature of that in the boiler.
These changes of temperature which the steam undergoes will affect
the surface of the metal with which the steam is in contact during
the period of compression; it follows from this, that the ends of the
cylinder principally comprising the clearance spaces must acquire a
higher temperature than those parts where expansion only takes place.
This is an important consideration, since the fresh steam from the
boiler comes first in contact with these spaces, and by touching
surfaces which have thus previously been heated, as it were, by the
high temperature of the compressed steam, less heat will be abstracted
from the fresh steam, and therefore a less amount of water will be
deposited in the cylinder.[59]
[58] The term “live” steam means steam taken direct from the boiler
and which has not been used in the cylinder or to do any work.
[59] Bauschinger’s Indicator Experiments on Locomotives, published in
Vol. III. of the RAILROAD GAZETTE.
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