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
If the body of a flying animal be in a horizontal position, a wing
attached to it in such a manner that its under surface shall look
forwards, and make an upward angle of 45° with the horizon is in a
position to be applied either vertically (figs. 82 and 83, p. 158), or
horizontally (figs. 67, 68, 69, and 70, p. 141). Such, moreover, is the
conformation of the shoulder-joint in insects, bats, and birds, that
the wing can be applied vertically, horizontally, or at any degree of
obliquity without inconvenience.[118] It is in this way that an insect
which may begin its flight by causing its wings to make figure-of-8
horizontal loops (fig. 71, p. 144), may gradually change the direction
of the loops, and make them more and more oblique until they are
nearly vertical (fig. 73, p. 144). In the beginning of such flight the
insect is screwed _nearly vertically upwards_; in the middle of it,
it is screwed _upwards and forwards_; whereas, towards the end of it,
the insect advances in _a waved line_ almost horizontally (see _q´_,
_r´_, _s´_, _t´_ of fig. 72, p. 144). The muscles of the wing are so
arranged that they can propel it in a horizontal, vertical, or oblique
direction. It is a matter of the utmost importance that the direction
of the stroke and the nature of the angles made by the surface of the
wing during its vibration with the horizon be distinctly understood; as
it is on these that all flying creatures depend when they seek to elude
the upward resistance of the air, and secure a maximum of elevating and
propelling power with a minimum of slip.
[118] The human wrist is so formed that if a wing be held in the
hand at an upward angle of 45°, the hand can apply it to the air in
a vertical or horizontal direction without difficulty. This arises
from the power which the hand has of moving in an upward and downward
direction, and from side to side with equal facility. The hand can
also rotate on its long axis, so that it virtually represents all the
movements of the wing at its root.
Public-domain text, read in full here on John Shaqi.
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