The mighty deep : $b and what we know of itGiberne, Agnes
Science
The mighty deep : $b and what we know of it
Giberne, Agnes
Marine biology; Nature study
So far as the reasoning went, it was faultless. It only did not go far
enough.
The balloon being made, he named a day for its ascent, and asked
many friends to witness his triumph. At the last moment, all air was
withdrawn; and everybody waited in expectation, hoping to see the novel
balloon skim lightly above their heads.
But the inventor, while using strong materials, had failed to make full
allowance for the tremendous pressure of the air, when counteractive
pressure from within should have been done away with. As the air was
drawn out, the sides of the balloon collapsed, being crushed together
as an empty egg-shell may be smashed in a boy’s hand. Instead of
soaring gaily upward, the would-be aeronaut stood on earth, scanning
with disappointed eyes a flattened and useless shell.
A diver going down into the sea has a much increased weight upon his
body; but he does not suffer from it to a serious extent, provided that
he is not raised or lowered too fast. Much depends upon this. Both
men and beasts can endure a good deal of alteration in the degree of
pressure, whether from air or from water; but they cannot bear very
abrupt changes. Hearts and lungs need time for growing accustomed to a
fresh condition. In early days of diving this was not understood, and
some divers lost their lives through being too hurriedly hauled up.
The same has been noticed in animals brought quickly from great depths.
They have been constantly found in the net or trawl, dying or dead,
their bodies swollen and even bursting from the lessening of pressure.
It was natural that at first the belief should arise of Life being in
those parts impossible. Now we know that animals die in the act of
being drawn up, and that they live and flourish in profound depths,
unaffected by the vast load of water.
The weight that a man can endure is not to be compared with what
fragile sea-creatures thrive under. Beyond a depth of some two hundred
feet or more, the pressure becomes too great for any human beings; yet
animals are found at depths of three or four miles. But the fact that
man breathes air, and that animals in the sea breathe, in a sense,
water, makes an enormous difference in their power to resist pressure.
One might suppose that the terrific weight of miles of water would
squeeze lower layers to a smaller bulk. Water is, however, very
difficult to compress; unlike air.
At the bottom of the sea, four or five miles deep, the weight is said
to be equal to about four tons upon the square inch. If this tremendous
load were pressing upon a mass of air, eleven thousand cubic feet in
quantity, the whole would be crushed together into only twenty-two
cubic feet. But the same weight pressing upon the same quantity of
sea-water, would merely reduce its size to ten thousand cubic feet. So
there is not much difference between the make of sea-water near the
surface and sea-water at a great depth.
Public-domain text, read in full here on John Shaqi.
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