It was at the conclusion of these experiments of 1903 that the brothers
concluded they had obtained sufficient data from their thousands of
glides and multitude of calculations to permit of their constructing
and making trial of a power-driven machine. The first designs got out
provided for a total weight of 600 lbs., which was to include the weight
of the motor and the pilot; but on completion it was found that there
was a surplus of power from the motor, and thus they had 150 lbs. weight
to allow for strengthening wings and other parts.
They came up against the problem to which Riach has since devoted so
much attention, that of propeller design. 'We had thought of getting the
theory of the screw-propeller from the marine engineers, and then, by
applying our table of air-pressures to their formulae, of designing
air-propellers suitable for our uses. But, so far as we could learn, the
marine engineers possessed only empirical formulae, and the exact action
of the screw propeller, after a century of use, was still very obscure.
As we were not in a position to undertake a long series of practical
experiments to discover a propeller suitable for our machine, it seemed
necessary to obtain such a thorough understanding of the theory of its
reactions as would enable us to design them from calculation alone.
What at first seemed a simple problem became more complex the longer we
studied it. With the machine moving forward, the air flying backward,
the propellers turning sidewise, and nothing standing still, it seemed
impossible to find a starting point from which to trace the various
simultaneous reactions. Contemplation of it was confusing. After long
arguments we often found ourselves in the ludicrous position of each
having been converted to the other's side, with no more agreement than
when the discussion began.
'It was not till several months had passed, and every phase of the
problem had been thrashed over and over, that the various reactions
began to untangle themselves. When once a clear understanding had been
obtained there was no difficulty in designing a suitable propeller, with
proper diameter, pitch, and area of blade, to meet the requirements of
the flier. High efficiency in a screw-propeller is not dependent upon
any particular or peculiar shape, and there is no such thing as a "best"
screw. A propeller giving a high dynamic efficiency when used upon one
machine may be almost worthless when used upon another. The propeller
should in every case be designed to meet the particular conditions of
the machine to which it is to be applied. Our first propellers, built
entirely from calculation, gave in useful work 66 per cent of the power
expended. This was about one-third more than had been secured by Maxim
or Langley.'
Public-domain text, read in full here on John Shaqi.
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