Geology, Vol. 1 [of 3] : $b Geologic processes and their resultsSalisbury, Rollin D.
Science
Geology, Vol. 1 [of 3] : $b Geologic processes and their results
Salisbury, Rollin D.
Geology
_Crevasses_ appear to be developed wherever there is appreciable
tension, and the causes of this tension are many. An obvious cause is
an abrupt increase of gradient in the bed (Fig. 238). If the change
of gradient be considerable, an ice-fall or cascade results, and the
ice may be greatly riven (Fig. 228). Below the cascade, the surface
may bristle with wedges and pinnacles of ice (séracs, Fig. 239).
Transverse crevices at the margin sometimes appear to be the result
of the tension developed on a curve. Oblique crevices on the surface
near the sides are commonly ascribed to the tension between the
faster-moving center and the slower-moving margins, and in like manner
crevasses that rise obliquely from the bottoms are attributed to the
tension between the faster-moving portions above and the slower-moving
portions below. All these crevasses indicate strains to which a liquid,
whose pressures are equal in all directions, does not offer a close
analogy. Longitudinal crevasses may affect both the river-like part
of a glacier and its deploying end, and are the result of tension
developed by movement within the ice itself, to which, again, rivers
offer no analogy. Somewhat similar cracks develop in the outer crust
of asphalt, when a mass of it is allowed to stand and spread; but in
this case there is evaporation of the volatile ingredients, giving to
the outer part relative rigidity and brittleness, while the inner part
remains more fluent. The analogy is therefore not perfect and probably
not really illustrative. The crevices may be narrow or wide, and both
narrow and wide may be found in the same glacier. The narrow crevices
that never open much are the most significant, as they show that very
little stretching is needed to satisfy the tension. The opening of a
gaping crevice is sometimes the work of weeks, and, in the slow-moving
glaciers of high latitudes, sometimes the work of successive seasons.
All this shows that the glacier is a very brittle body, incapable of
resisting even very moderate strains brought to bear upon it very
slowly. Had the ice even moderate ductility, it would adapt itself to
tension brought to bear upon it so slowly as are many of the tensions
which produce crevassing. In its behavior under tension therefore a
glacier is notably unlike a river.
[Illustration: +Fig.+ 239.—Séracs of glacier. (Reid.)]
SURFACE FEATURES.
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