Dirigible BalloonsHayward, Charles B. (Charles Brian)
History
Dirigible Balloons
Hayward, Charles B. (Charles Brian)
Aeronautics; Airships
*Astra-Torres.* In reviewing the specifications of any of the big
dirigibles, the observer cannot fail to be struck by the excessive
amount of power necessary to drive them at speeds which are lower than
the minimum, or landing speeds, of many aeroplanes. When a speed of 45
miles per hour was first reached by a dirigible, it was acclaimed as a
great feat. But this comparatively moderate rate of travel was surpassed
only by increasing the number of motors and their horsepower until the
fuel consumption became exceedingly high. This necessitated the carrying
of a great weight of fuel and cut down correspondingly the useful load
that the dirigible was capable of lifting as well as restricted its
radius of flight at full speed. Until aerodynamic research had
demonstrated the contrary, the necessity for such a tremendous amount of
power was considered necessary to overcome the head resistance of the
balloon itself. Research brought out in a striking manner how great a
proportion of the total head resistance of an aeroplane was due to the
struts and bracing wires. In the construction of the different types of
airships illustrated, it will be noted that the gear provided for
suspending the car or cars below the balloon requires a great number of
cables. Later developments showed that by eliminating the great amount
of head resistance caused by these numerous surfaces, the speed of a
dirigible could be increased by over 50 per cent with the same amount of
power.
[Illustration: Fig. 14. Section of Astra-Torres, Illustrating Method of
Suspension. _CB_, Bracing of Heavy Fabric Bands; _SR_ and _A_,
Suspension Ropes and Cable Passing through Envelope; _S_, Expansion
Sleeve in Envelope; _CC’_, Ropes to Sides of Car; _E_, Envelope]
_Improved Suspension._ The shortcoming of the dirigible with reference
to suspension was realized more than ten years previous by a
Spaniard—Torres—but owing to lack of financial support, he was unable to
put his idea into execution. The principle he evolved is made clear by
Fig. 14, which gives a section of an Astra-Torres dirigible illustrating
the method of suspension. Instead of the ropes _SR_ used to suspend the
car being attached to bands passing around the envelope, these
reinforcing bands _CB_ and also the ropes fastened to them are placed
inside the envelope, thus eliminating head resistance from those
sources.
Public-domain text, read in full here on John Shaqi.
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