Mechanics: The Science of MachineryBond, A. Russell (Alexander Russell)
History
Mechanics: The Science of Machinery
Bond, A. Russell (Alexander Russell)
Machinery; Mechanical engineering; Mechanics
Steam turbines are particularly adapted for use in electric power
plants. The speed of rotation of the Parsons and Curtis types is much
lower than that of the De Laval and hence the electric generators may
be directly driven by them without the interposition of any gearing.
They can be built of larger power than the reciprocating engines
because they are so economical of space.
[Illustration: FIG. 50.--PERIPHERAL VIEW OF THE BLADES AND NOZZLES OF A
CURTIS TURBINE]
A good comparison of turbine versus reciprocating engines is offered
by the 74th Street power station of the Manhattan Elevated Railway,
New York. This station, which was completed in 1901, was equipped with
eight huge reciprocating engines, each developing 8,000 horsepower
normally, and capable of delivering a maximum of 12,500 horsepower. The
whole plant, therefore, had a maximum capacity of 100,000 horsepower.
Gradually these units have been giving way to steam turbines of much
higher power, and in 1919 there was installed one powerful turbine
which alone was capable of developing as much power as the entire plant
of 1901. This is a triple-compound turbine comprising one high-pressure
turbine and a low-pressure turbine at each side. Steam enters the
high-pressure turbine at 205 pounds pressure to the square inch and
then exhausts into the low-pressure turbines, passing from them into
condensers which operate under 29 inches vacuum. Each turbine drives
a separate generator and the combined horsepower of the whole unit is
about 100,000, while the floor space occupied is only 50 by 52 feet.
The economy of space and of fuel offered by the steam turbine is of
great value in the power plants of ships, and this form of prime
mover has been installed on modern high-speed passenger liners and
also on high-speed war vessels. While in certain respects the turbine
is ideal for such service, there are two handicaps which must be
overcome. In the first place, the most efficient speed for the turbine
is considerably higher than the efficient speed of the propeller
and some means must be provided for stepping down the speed. In
the second place, the turbine cannot be as economically controlled
as a reciprocating engine and its direction of rotation cannot be
reversed, so that difficulties are encountered in maneuvering the ship
in harbors. It is no simple matter to gear down the high speed and
enormous power of a turbine, However, an elaborate system of gearing
has been provided for this purpose which has proved satisfactory even
in powerful battle cruisers. The British battle cruisers with a power
plant of 134,000 horsepower are driven by geared turbines. To reverse
the propellers separate low-power turbines are used.
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