The difference between experiments with models and with full-sized
machines is emphasised by Maxim's statement to the effect that with
a small apparatus for ascertaining the power required for artificial
flight, an angle of incidence of one in fourteen was most advantageous,
while with a large machine he found it best to increase his angle to one
in eight in order to get the maximum lifting effect on a short run at a
moderate speed. He computed the total lifting effect in the experiments
which led to the accident as not less than 10,000 lbs., in which is
proof that only his rail system prevented free flight.
X. SAMUEL PIERPOINT LANGLEY
Langley was an old man when he began the study of aeronautics, or, as
he himself might have expressed it, the study of aerodromics, since he
persisted in calling the series of machines he built 'Aerodromes,' a
word now used only to denote areas devoted to use as landing spaces for
flying machines; the Wright Brothers, on the other hand, had the great
gift of youth to aid them in their work. Even so it was a great race
between Langley, aided by Charles Manly, and Wilbur and Orville Wright,
and only the persistent ill-luck which dogged Langley from the start to
the finish of his experiments gave victory to his rivals. It has been
proved conclusively in these later years of accomplished flight that the
machine which Langley launched on the Potomac River in October of 1903
was fully capable of sustained flight, and only the accidents incurred
in launching prevented its pilot from being the first man to navigate
the air successfully in a power-driven machine.
The best account of Langley's work is that diffused throughout a weighty
tome issued by the Smithsonian Institution, entitled the Langley Memoir
on Mechanical Flight, of which about one-third was written by Langley
himself, the remainder being compiled by Charles M. Manly, the engineer
responsible for the construction of the first radial aero-engine, and
chief assistant to Langley in his experiments. To give a twentieth
of the contents of this volume in the present short account of the
development of mechanical flight would far exceed the amount of space
that can be devoted even to so eminent a man in aeronautics as S.
P. Langley, who, apart from his achievement in the construction of a
power-driven aeroplane really capable of flight, was a scientist of no
mean order, and who brought to the study of aeronautics the skill of the
trained investigator allied to the inventive resource of the genius.
Public-domain text, read in full here on John Shaqi.
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