Here, in this last quotation, are the first beginnings of the inherent
stability which proved so great an advance in design, in this
twentieth century. But the extracts given do not begin to exhaust the
range of da Vinci’s observations and deductions. With regard to bird
flight, he observed that so long as a bird keeps its wings outspread
it cannot fall directly to earth, but must glide down at an angle
to alight--a small thing, now that the principle of the plane in
opposition to the air is generally grasped, but da Vinci had to find
it out. From observation he gathered how a bird checks its own speed
by opposing tail and wing surface to the direction of flight, and
thus alights at the proper ‘landing speed.’ He proved the existence
of upward air currents by noting how a bird takes off from level
earth with wings outstretched and motionless, and, in order to get an
efficient substitute for the natural wing, he recommended that there
be used something similar to the membrane of the wing of a bat--from
this to the doped fabric of an aeroplane wing is but a small step, for
both are equally impervious to air. Again, da Vinci recommended that
experiments in flight be conducted at a good height from the ground,
since, if equilibrium be lost through any cause, the height gives time
to regain it. This recommendation, by the way, received ample support
in the training areas of war pilots.
Man’s muscles, said da Vinci, are fully sufficient to enable him to
fly, for the larger birds, he noted, employ but a small part of their
strength in keeping themselves afloat in the air--by this theory he
attempted to encourage experiment, just as, when his time came, Borelli
reached the opposite conclusion and discouraged it. That Borelli was
right--so far--and da Vinci wrong, detracts not at all from the repute
of the earlier investigator, who had but the resources of his age to
support investigations conducted in the spirit of ages after.
His chief practical contributions to the science of flight--apart
from numerous drawings which have still a value--are the helicopter
or lifting screw, and the parachute. The former, as already noted,
he made and proved effective in model form, and the principle which
he demonstrated is that of the helicopter of to-day, on which sundry
experimenters work spasmodically, in spite of the success of the plane
with its driving propeller. As to the parachute, the idea was doubtless
inspired by observation of the effect a bird produced by pressure of
its wings against the direction of flight.
Public-domain text, read in full here on John Shaqi.
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