Artificial and Natural FlightMaxim, Hiram S. (Hiram Stevens)
Science
Artificial and Natural Flight
Maxim, Hiram S. (Hiram Stevens)
Aeronautics; Airplanes; Flight
In my experiments with narrow superposed planes, I have always found
that with strips of thin metal made sharp at both edges and only
slightly curved, the lifting effect, when considered in terms of screw
thrust, was always greater than with any arrangement of the wooden
aeroplanes used in Philipps’ experiments. It would, therefore, appear
that there is no advantage in the peculiar form of “sustainer” employed
by this inventor.
If an aeroplane be made perfectly flat on the bottom side and convex on
the top, and be mounted in the air so that the bottom side is exactly
horizontal, it produces a lifting effect no matter in which direction it
is run, because, as it advances, it encounters stationary air which is
divided into two streams. The top stream being unable to fly off at a
tangent when turning over the top curve, flows down the incline and
joins the current which is flowing over the lower horizontal surface.
The angle at which the combined stream of air leaves the plane is the
resultant of these two angles; consequently, as the plane finds the air
in a stationary condition, and leaves it with a downward motion, the
plane itself must be lifted. It is true that small and narrow aeroplanes
may be made to lift considerably more per square foot of surface than
very large ones, but they do not offer the same safeguard against a
rapid descent to the earth in case of a stoppage or breakdown of the
machinery. With a large aeroplane properly adjusted, a rapid and
destructive fall to the earth is quite impossible.
THE EFFICIENCY OF SCREW PROPELLERS, STEERING, STABILITY, &c.
Public-domain text, read in full here on John Shaqi.
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