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 engines of their first vessel, the Brandon, required but 3-1/4
pounds of coal per hour and per horse-power, in 1854, when the usual
consumption was a third more. Five years later, they had built engines
which consumed a third less than those of the Brandon; and
thenceforward, for many years, their engines, when of large size,
exhibited what was then thought remarkable economy, running on a
consumption of from 2-1/4 to 2-1/2 pounds.
In the year 1865 the British Government ordered a competitive trial of
three naval vessels, which only differed in the form of their engines.
The Arethusa was fitted with trunk-engines of the ordinary kind; the
Octavia had three steam-cylinders, coupled to three cranks placed at
angles of 120° with each other; and the Constance was fitted with
compound engines, two sets of three cylinders each, and each taking
steam from the boiler into one cylinder, passing it through the other
two with continuous expansion, and finally exhausting from the third
into the condenser. These vessels, during one week's steaming at sea,
averaged, respectively, 3.64, 3.17, and 2.51 pounds of coal per hour
and per horse-power, and the Constance showed a marked superiority in
the efficiency of the mechanism of her engines, when the losses by
friction were compared.
The change from the side-lever single-cylinder engine, with
jet-condenser and paddle-wheels, to the direct-acting compound engine,
with surface-condenser and screw-propellers, has occurred within the
memory and under the observation of even young engineers, and it may
be considered that the revolution has not been completely effected.
This change in the design of engine is not as great as it at first
seemed likely to become. Builders have but slowly learned the
principles stated above in reference to expansion in one or more
cylinders, and the earlier engines were made with a high and low
pressure cylinder working on the same connecting-rod, and each machine
consisted of four steam-cylinders. It was at last discovered that a
high-pressure single-cylinder engine exhausting into a separate
larger low-pressure engine might give good results, and the compound
engine became as simple as the type of engine which it displaced. This
independence of high and low pressure engines is not in itself novel,
for the plan of using the exhaust of a high-pressure engine to drive a
low-pressure condensing engine was one of the earliest of known
combinations.
Public-domain text, read in full here on John Shaqi.
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