Langley Memoir on Mechanical Flight, Parts I and II: Smithsonian Contributions to Knowledge, Volume 27 Number 3, Publication 1948, 1911Langley, S. P. (Samuel Pierpont)
History
Langley Memoir on Mechanical Flight, Parts I and II: Smithsonian Contributions to Knowledge, Volume 27 Number 3, Publication 1948, 1911
Langley, S. P. (Samuel Pierpont)
Aeronautics; Flight
As already stated elsewhere, it was found in the experiments with
the coil boiler that an artificial forcing of the circulation of
the water was a necessity, as the natural circulation was too slow
to be of any service. Accordingly, but only after numerous devices
involving less weight had failed, a pump driven from the engine
shaft was designed and used. In the early experiments various types
of pumps were tried in which the valves were opened and closed
automatically by the pressure of the water. It was found, however,
that with the mixture of steam and water to be handled, the valves
could not be depended upon to open and close properly at the high
speeds at which is was necessary to run the engine. In Aerodrome
No. 5, therefore, a double-acting pump with a mechanically operated
valve was used. The pump, shown in detail in Plate 26A, is driven
from a shaft connected with the main engine shaft by a spur gear
and pinion, which rotates at half the speed of the engine shaft.
The pump itself consists of two barrels, the main barrel having a
diameter of 23 mm. with a piston stroke of 20 mm. The outer shell of
the barrel is made of aluminum bronze and is lined with a cast-iron
bushing 1.25 mm. in thickness. The piston has a length of 14 mm. and
is formed of an aluminum disc and center, having a follower plate
of the same material with two cast-iron split rings sprung in. The
water is received into and delivered from the valve cylinder, which
is 18 mm. in diameter and also lined with a cast-iron bushing 1.25
mm. thick. The aluminum bronze shells of both cylinders are 0.75 mm.
in thickness. The valve is a simple piston valve 35 mm. long with
bearing faces 4 mm. long at each end. The water is taken from the
bottom of the separator and led to the center of the valve chest of
the pump by a copper pipe 1 cm. outside diameter. The ports [p115]
leading from the valve to the main cylinder are 3 mm. wide and 34
mm. apart over their openings. It will thus be seen that when the
valve is in its central position, as it should be at the beginning
of the piston stroke, both ports are covered with a lap of 0.5 mm.
inside and out, so that the valve has to move 0.5 mm. before suction
or discharge can take place. As the valve is moving most rapidly at
this point, it opens and both functions begin before the piston has
advanced perceptibly. The delivery is made at the ends of the valve
cylinder through two copper pipes of 1 cm. diameter that unite into
a single pipe before reaching the boiler. The throw of the valve is
14 mm. so that the ports are uncovered and held wide open for the
greater portion of the stroke of the piston, and begin to close only
when the latter approaches the end of its stroke. In this way perfect
freedom is given to the flow of the water and all choking is avoided.
As the engine has been run at a speed of more than 688 revolutions
per minute, the pump must have made at least 344 strokes in the same
time, thus displacing 166.2 cc. of water.
Public-domain text, read in full here on John Shaqi.
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