A History of the Growth of the Steam-EngineThurston, Robert Henry
History
A History of the Growth of the Steam-Engine
Thurston, Robert Henry
Steam-engines -- History
THE PUMPING-ENGINE in use at the present time has passed through a
series of changes not differing much from that which has been traced
with the stationary mill-engine. The Cornish engine is still used to
some extent for supplying water to towns, and is retained at deep
mines. The modern Cornish engine differs very little from that of the
time of Watt, except in the proportions of parts and the form of its
details. Steam-pressures are carried which were never reached during
the preceding period, and, by careful adjustment of well-set and
well-proportioned valves and gearing, the engine has been made to work
rather more rapidly, and to do considerably more work. It still
remains, however, a large, costly, and awkward contrivance, requiring
expensive foundations, and demanding exceptional care, skill, and
experience in management. It is gradually going out of use. This
engine, as now constructed by good builders, is shown in section in
Fig. 101.
A comparison with the Watt engine of a century earlier will at once
enable any one to appreciate the extent to which changes may be made
in perfecting a machine, even after it has become complete, so far as
supplying it with all essential parts can complete it.
[Illustration: FIG. 101.--Cornish Pumping-Engine, 1880.]
In the figure, _A_ is the cylinder, taking steam from the boiler
through the steam-passage, _M_. The steam is first admitted above the
piston, _B_, driving it rapidly downward and raising the pump-rod,
_E_. At an early period in the stroke the admission of steam is
checked by the sudden closing of the induction-valve at _M_, and the
stroke is completed under the action of expanding steam assisted by
the inertia of the heavy parts already in motion. The necessary weight
and inertia is afforded, in many cases, where the engine is applied to
the pumping of deep mines, by the immensely long and heavy pump-rods.
Where this weight is too great, it is counterbalanced, and where too
small, weights are added. When the stroke is completed, the
"equilibrium valve" is opened, and the steam passes from above to the
space below the piston, and an equilibrium of pressure being thus
produced, the pump-rods descend, forcing the water from the pumps and
raising the steam-piston. The absence of the crank, or other device
which might determine absolutely the length of stroke, compels a very
careful adjustment of steam-admission to the amount of load. Should
the stroke be allowed to exceed the proper length, and should danger
thus arise of the piston striking the cylinder-head, _N_, the movement
is checked by buffer-beams. The valve-motion is actuated by a
plug-rod, _J K_, as in Watt's engine. The regulation is effected by a
"cataract," a kind of hydraulic governor, consisting of a
plunger-pump, with a reservoir attached. The plunger is raised by the
engine, and then automatically detached. It falls with greater or less
rapidity, its velocity being determined by the size of the
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