Lecture on Artificial Flight: Given by request at the Academy of Natural SciencesKrueger, William G.
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Lecture on Artificial Flight: Given by request at the Academy of Natural Sciences
Krueger, William G.
Aeronautics
Walking, swimming and flying are modifications of, and merging into,
each other by insensible gradations; and the modifications, resulting
therefrom, are necessitated by the amount of support afforded on, and in
the different mediums--earth, water, air. Although flight is,
indisputably, the finest of the different animal movements, yet it does
not essentially differ from the other two, as the material and forces
employed are literally the same as those in walking and swimming.
Flight is, therefore, a purely mechanical problem, and in compliance
with the law of decrease, as stated before, the surface requisite to
transport bodies in the air, is found to be about one-half,
proportionately, to twelve times the weight.
Applying this observation to an apparatus of, say 200 [lb]s., we find
that the surface of a bird of 18 [lb]s.--about one-twelfth of said 200
[lb]s.--to be 10 square feet; multiplying this by twelve, its weight, we
have 120 square feet of surface, and of which one-half accordingly, 60
square feet, is enough for the support of 200 pounds. Such a machine,
although possessing much less surface than parachutes generally do, is
in the form of inclined planes of proper construction, fully sufficient
for man to slide down safely through the air, without exertion, from an
elevation at least ten times the vertical distance, that is, from the
top of the Palace Hotel to the foot of Baldwin's.
As to the force required, although impossible to give datas, the law of
decrease with greater weight reigns absolute here also. Man's muscular
power for tolerably swift horizontal flight is far greater than
necessary; and, with properly constructed contrivances, he will be able
to travel, at an incline upwards of one in thirty, at least twenty miles
an hour, by manual power alone. A carrier pigeon flies, for a short
time, at the rate of one hundred miles an hour, and some birds much
faster. But in employing any of the many excellent motive powers at
command now, and with larger machines, we will be able to surpass the
swiftest birds.
As for the objection, that the fury of the wind will hinder artificial
flight, it is refuted by observing that even a hurricane, which,
traveling over eighty miles an hour, occurs but rarely, does hardly
prevent the flight of fast birds, and still less would that of a compact
and solid flying machine, because of its greater weight and momentum.
And even if an occasional storm should be dangerous, the machine, by its
greater swiftness, could be turned above, below or sideways, out of the
path of destruction, or it need not travel at such rare times. Besides,
the effect of the storm upon a body within its own medium is
insignificant to what it is when that body offers resistance by being
attached to another medium, as ships on the water, or houses and fences
on land.
XVIII.--FLYING MACHINES OF THE PRESENT, THEIR DEFECTS.
Public-domain text, read in full here on John Shaqi.
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