Lecture on Artificial Flight: Given by request at the Academy of Natural Sciences — John Shaqi
Lecture on Artificial Flight: Given by request at the Academy of Natural SciencesKrueger, William G.
History
Lecture on Artificial Flight: Given by request at the Academy of Natural Sciences
Krueger, William G.
Aeronautics
Of course, the belief of many, that birds have large air cells in their
interior, that those cavities contain heated air, and that this heated
air in some mysterious manner contributes to, if it does not actually
produce, flight, falls to the ground upon the least reflection. No
argument could be more fallacious. The bird is a heavy, compact, by no
means bulky body, and that trifle of heated air, or gas, if such were
the case, but is not, which possibly might help elevation, would be but
dust in the scale. A small balloon of two feet diameter--a larger body
than any bird--can lift only about a quarter of a pound. But, besides,
many admirable flyers, such as bats, have no air cells; while many
animals, never intended to fly, are provided with them. It may,
therefore, be reasonably concluded that flight is in no way connected
with air cells, and the best proof that can be adduced is to be found in
the fact that it can be performed to perfection in their absence.
XIV.--SURFACE.
The next of the three properties necessary for flight, is the extension
of the locomotive organs in winged beings--the planes. Although the
wings in the different animals differ much in their form, texture,
construction, number, and the matter which composes them, yet they
resemble one another in the expansion and development of their surfaces,
being stretched on each side of the body, and playing the part of a
parachute. The animal, therefore, cannot fall like a stone, in obedience
to the accelerated force of gravity, but it descends with a slow
velocity; constant regular, and considerably abated.
This influence, then, exercised by the flat surface on the fall of
masses, is seen in a sheet of paper of the same weight as a grain of
lead, it will fall much more slowly. But if we make the paper a compact
ball, and flatten the lead into a broad, thin sheet, the reverse result
will be produced, and the paper reach the ground before the lead.
Therefore, bodies in the air are light or heavy in proportion to their
surfaces, and the heaviest may become light by an alteration of form.
For successful flight, then, a just proportion of surface and weight is
necessary; because, as stated, the air being elastic, its resistance is
much more effectual with light bodies than heavy ones; and this
proportion is such that the extent of surface is always in an inverse
ratio to the weight of the winged animal.
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