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
_The regular and irregular in Flight._--The coot, diver, duck, and
goose fly with great regularity in nearly a straight line, and with
immense speed; they rarely if ever skim or glide, their wings being too
small for this purpose. The woodpecker, magpie, fieldfare and sparrow,
supply examples of what may be termed the “irregular” in flight. These,
as is well known, fly in curves of greater or less magnitude, by giving
a few vigorous strokes and then desisting, the effect of which is to
project them along a series of parabolic curves. The snipe and woodcock
are irregular in another respect, their flight being sudden, jerky, and
from side to side.
_Mode of ascending, descending, turning, etc._--All birds which do
not, like the swallow and humming-birds, drop from a height, raise
themselves at first by a vigorous leap, in which they incline their
bodies in an upward direction, the height thus attained enabling them
to extend and depress their wings without injury to the feathers. By
a few sweeping strokes delivered downwards and forwards, in which the
wings are made nearly to meet above and below the body, they lever
themselves upwards and forwards, and in a surprisingly short time
acquire that degree of momentum which greatly assists them in their
future career. In rising from the ground, as may readily be seen in
the crow, pigeon, and kingfisher (fig. 102, p. 183), the tail is
expanded and the neck stretched out, so that the body is converted
into an inclined plane, and acts mechanically as a kite. The centre of
gravity and the position of the body are changed at the will of the
bird by movements in the neck, feet, and tail, and by increasing or
decreasing the angles which the under surface of the wings makes with
the horizon. When a bird wishes to fly in a horizontal direction, it
causes the under surface of its wings to make a slight _forward_ angle
with the horizon. When it wishes to ascend, the angle is increased.
When it wishes to descend, it causes the under surface of the wings
to make a slight _backward_ angle with the horizon. When a bird flies
up, its wings strike downwards and _forwards_. When it flies down, its
wings strike downwards and _backwards_. When a sufficient altitude
has been attained, the length of the downward stroke is generally
curtailed, the mere extension and flexion of the wing, assisted by the
weight of the body, in such instances sufficing. This is especially
the case if the bird is advancing against a slight breeze, the effort
required under such circumstances being nominal in amount. That little
power is expended is proved by the endless gyrations of rooks and other
birds; these being continued for hours together. In birds which glide
or skim, it has appeared to me that the wing is recovered much more
quickly, and the down stroke delivered more slowly, than in ordinary
flight--in fact, that the rapidity with which the wing acts in an
upward and downward direction is, in some instances, reversed; and this
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account