Every-day Science: Volume 6. The Conquest of NatureWilliams, Henry Smith
Science
Every-day Science: Volume 6. The Conquest of Nature
Williams, Henry Smith
Industrial arts; Machinery
"As there are no reciprocating parts in a steam turbine, and as a
perfect balance of its rotating parts is absolutely essential to its
successful operation, vibration is reduced to such a small element that
the simplest foundations will suffice, and it is safe to locate steam
turbines on upper floors of a factory if this be desirable or necessary.
"The perfect balance of the moving parts and the extreme simplicity
of construction tend to minimize the wear and increase the life of a
turbine, and at the same time to reduce the chance of interruption
in its operation through derangement of, or damage to, any of its
essential parts.
"Although hardly beyond the stage of its first advent in the
motive-power field, the steam turbine has met with much favor, and
there is promise of its wide use for the purposes to which it is
particularly adapted. At present, however, its uses are restricted to
service that is continuous and regular, its particular adaptability
being for the driving of electrical generators, pumps, ventilating
fans, and similar work, especially where starting under load is not
essential.
"Steam turbines are now being built in the United States in all sizes
up to 3,000 horse-power. Their use abroad covers a longer period and
has become more general. The largest turbines thus far attempted
are those of the Metropolitan District Electric Traction Company,
of London, embracing four units of 10,000 horse-power each. Several
turbines of large size have been operated successfully in Germany."
It should be added that the compound turbine wheel of Parsons is not
the only turbine wheel that has proved commercially valuable. There
is a turbine consisting of a single ring of revolving blades, the
invention of Dr. Gustav De Laval, which has proved itself capable of
competing with the old type of engine. To make this form of single
turbine operate satisfactorily, it is necessary to have steam under
high pressure, and to generate a very high speed of revolution. In
practice, the De Laval machines sometimes attain a speed of thirty
thousand revolutions per minute. This is a much higher rate of speed
than can advantageously be utilized directly in ordinary machinery, and
consequently the shaft of this machine is geared to another shaft in
such a way as to cause the second shaft to revolve much more slowly.
VII
GAS AND OIL ENGINES
Just at the time when the type of piston-and-cylinder engine has thus
been challenged, it has chanced that a new motive power has been
applied to the old type of engine, through the medium of heated gas.
The idea of such utilization of a gas other than water vapor is by no
means new, but there have been practical difficulties in the way of the
construction of a commercial engine to make use of the expansive power
of ordinary gases.
Public-domain text, read in full here on John Shaqi.
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