British Airships, Past, Present, and Future — John Shaqi
British Airships, Past, Present, and FutureWhale, George
History
British Airships, Past, Present, and Future
Whale, George
Aircraft; Airships -- Britain -- History
The lift of an airship is also affected by flying through snow and
rain. A considerable amount of moisture can be taken up by the fabric
and suspensions of a large airship which, however, may be largely
neutralized by the waterproofing of the envelope. Snow, as a rule, is
brushed off the surface by the passage of the ship through the air,
though in the event of its freezing suddenly, while in a melting state,
a very considerable addition of weight might be caused. There have
been many instances of airships flying through snow, and as far as is
known no serious difficulty has been encountered through the adhesion
of this substance. The humidity of the air may also cause slight
variations in lift, but for rough calculations it may be ignored, as
the difference in lift is not likely to amount to more than 0.3 lb. per
1,000 cubic feet of gas.
The purity of hydrogen has an important effect upon the lift of an
airship. One of the greatest difficulties to be contended with is
maintaining the hydrogen pure in the envelope or gasbags for any length
of time. Owing to diffusion gas escapes with extraordinary rapidity,
and if the fabric used is not absolutely gastight the air finds its way
in where the gas has escaped. The maximum purity of gas in an airship
never exceeds 98 per cent by volume, and the following example shows
how greatly lift can be reduced:
Under mean atmospheric conditions, which are taken at a temperature of
55 degrees Fahrenheit, and the barometer at 29.5 inches, the lift of
1,000 cubic feet of hydrogen at 98 per cent purity is 69.6 lb. Under
same conditions at 80 per cent purity the lift of 1,000 cubic feet of
hydrogen is 56.9 lb., a resultant loss of 12.9 lb. per 1,000 cubic feet.
The whole of this statement on "lift" can now be condensed into three
absolute laws:
1. Lift is directly proportional to barometric pressure.
2. Lift is inversely proportional to absolute temperature.
3. Lift is directly proportional to purity.
AIRSHIP DESIGN
The design of airships has been developed under three distinct types,
the Rigid, the Semi-Rigid, and the Non-Rigid.
The rigid, of which the German Zeppelin is the leading example,
consists of a framework, or hull composed of aluminium, wood, or other
materials from which are suspended the cars, machinery and other
weights, and which of itself is sufficiently strong to support its own
weight. Enclosed within this structure are a number of gas chambers or
bags filled with hydrogen, which provide the necessary buoyancy. The
hull is completely encased within a fabric outer cover to protect the
hull framework and bags from the effects of weather, and also to temper
the rays of the sun.
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