Animal Locomotion; or, walking, swimming, and flying: With a dissertation on aëronauticsPettigrew, James Bell
Science
Animal Locomotion; or, walking, swimming, and flying: With a dissertation on aëronautics
Pettigrew, James Bell
Aeronautics; Animal locomotion
It is a mistake to suppose, as many do, that the tone or note produced
by the wing during its vibrations is a true indication of the number
of beats made by it in any given time. This will be at once understood
when I state, that a long wing will produce a higher note than a
shorter one driven at the same speed and having the same superficial
area, from the fact that the tip and body of the long wing will move
through a greater space in a given time than the tip and body of the
shorter wing. This is occasioned by all wings being jointed at their
roots, the sweep made by the different parts of the wing in a given
time being longer or shorter in proportion to the length of the pinion.
It ought, moreover, not to be overlooked, that in insects the notes
produced are not always referable to the action of the wings, these, in
many cases, being traceable to movements induced in the legs and other
parts of the body.
It is a curious circumstance, that if portions be removed from the
posterior margins of the wings of a buzzing insect, such as the wasp,
bee, blue-bottle fly, etc., the note produced by the vibration of
the pinions is raised in pitch. This is explained by the fact, that
an insect whose wings are curtailed requires to drive them at a much
higher speed in order to sustain itself in the air. That the velocity
at which the wing is urged is instrumental in causing the sound, is
proved by the fact, that in slow-flying insects and birds no note
is produced; whereas in those which urge the wing at a high speed,
a note is elicited which corresponds within certain limits to the
number of vibrations and the form of the wing. It is the posterior or
thin flexible margin of the wing which is more especially engaged in
producing the sound; and if this be removed, or if this portion of the
wing, as is the case in the bat and owl, be constructed of very soft
materials, the character of the note is altered. An artificial wing,
if properly constructed and impelled at a sufficiently high speed,
emits a drumming noise which closely resembles the note produced by the
vibration of short-winged, heavy-bodied birds, all which goes to prove
that sound is a concomitant of rapidly vibrating wings.
_The Wing area Variable and in Excess._--The travelling-surfaces of
insects, bats, and birds greatly exceed those of fishes and swimming
animals; the travelling-surfaces of swimming animals being greatly
in excess of those of animals which walk and run. The wing area of
insects, bats, and birds varies very considerably, flight being
possible within a comparatively wide range. Thus there are light-bodied
and large-winged insects and birds--as the butterfly (fig. 57) and
heron (fig. 60, p. 126); and others whose bodies are comparatively
heavy, while their wings are insignificantly small--as the sphinx moth
and Goliath beetle (fig. 58) among insects, and the grebe, quail, and
partridge (fig. 59, p. 126) among birds.
[Illustration:
Public-domain text, read in full here on John Shaqi.
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