Catechism of the locomotiveForney, Matthias N. (Matthias Nace)
Science
Catechism of the locomotive
Forney, Matthias N. (Matthias Nace)
Locomotives -- Handbooks, manuals, etc.
the end of the stroke with a certain amount of unexpended momentum
stored up in it, if this energy is expended by producing pressure on
the crank, then it will not only be a waste of energy but a double
waste by retarding the motion of the crank. If, however, this energy
can be absorbed by compressing steam which will fill the clearance
spaces, it will not only prevent the retarding effect referred to,
but the energy in the piston and other parts will be converted into
steam pressure, which will be given out in useful work during the next
stroke. It would, of course, be impossible to arrest the motion of the
piston instantly, and therefore its momentum is gradually absorbed from
the time compression begins until it reaches the end of the stroke. As
the energy of a moving body is equal to its weight multiplied by the
square of its speed, it is obvious that to overcome this a different
amount of compression would be required for each speed, and also that
it must be adjusted to the weight of the moving parts. Such exact
adaptation is not practicable on locomotives, nor does the link motion
enable us to alter the amount of compression with so much exactness:
but the explanation shows the value of increasing the amount of
compression with the speed, which fortunately the peculiarities of the
shifting-link motion enable us to do without difficulty.
[Illustration:
_Fig. 139._]
QUESTION 224. _What cause produces the form of diagram represented by
Fig. 139?_
_Answer._ It is produced by excessive compression, which causes
the pressure in the cylinder to rise above boiler pressure before
pre-admission begins. As soon as the port is opened, part of the steam
in the cylinder flows back into the steam-chest, and thus the pressure
is reduced, as shown by the diagram.
QUESTION 225. _How can we determine whether the steam is distributed in
the cylinders to the best advantage, and how can we discover the fault,
if there is one, in the link motion?_
_Answer._ The indicator will show the action of the steam in the
cylinder, and motion-curves drawn with the instrument described in
answer to Question 192 will show the exact movement of the valve. By
comparing the indicator diagram with the motion-curves, the one will
show the defects in the other.[62]
[62] See description of Richards’ Improved Steam Engine Indicator,
with directions for its use, by Charles T. Porter, London.
QUESTION 226. _To what extent can the movement of the valve be modified
by alterations in the proportions of the link motion?_
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