The first trial of this vessel was made in July of 1900, and was
singularly unfortunate. The winch by which the sliding weight was
operated broke, and the balloon was so bent that the working of the
propellers was interfered with, as was the steering. A speed of 13 feet
per second was attained, but on descending the airship ran against some
piles and was further damaged. Repairs were completed by the end of
September, 1900, and on a second trial flight made on October 21st a
speed of 30 feet per second was reached.
[Illustration: Zeppelin, pre-war type.]
Zeppelin was far from satisfied with the performance of this vessel,
and he therefore set about collecting funds for the construction of
a second, which was completed in 1905. By this time the internal
combustion engine had been greatly improved, and without any increase
of weight, Zeppelin was able to instal two motors of 85 horse-power
each. The total capacity was 367,000 cubic feet of hydrogen, carried
in 16 gas bags inside the framework, and the weight of the whole
construction was 9 tons--a ton less than that of the first Zeppelin
airship. Three vertical planes at front and rear controlled horizontal
steering, while rise and fall was controlled by horizontal planes
arranged in box form. Accident attended the first trial of this second
airship, which took place over the Bodensee on November 30th, 1905. ‘It
had been intended to tow the raft, to which it was anchored, further
from the shore against the wind. But the water was too low to allow
the use of the raft. The balloon was therefore mounted on pontoons,
pulled out into the lake, and taken in tow by a motor-boat. It was
caught by a strong wind which was blowing from the shore, and driven
ahead at such a rate that it overtook the motor-boat. The tow rope was
therefore at once cut, but it unexpectedly formed into knots and became
entangled with the airship, pulling the front end down into the water.
The balloon was then caught by the wind and lifted into the air, when
the propellers were set in motion. The front end was at this instant
pointing in a downward direction, and consequently it shot into the
water, where it was found necessary to open the valves.’[14]
Public-domain text, read in full here on John Shaqi.
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