The Glaciers of the Alps: Being a narrative of excursions and ascents, an account of the origin and phenomena of glaciers and an exposition of the physical principles to which they are relatedTyndall, John
Science
The Glaciers of the Alps: Being a narrative of excursions and ascents, an account of the origin and phenomena of glaciers and an exposition of the physical principles to which they are related
Tyndall, John
Alps -- Description and travel; Glaciers -- Alps
The retardation of the ice is most evident near the sides; in most
cases, the ice for a considerable distance right and left of the central
line moves with a sensibly uniform velocity; there is no dragging of the
particles asunder by a difference of motion, and, consequently, a
compact centre is perfectly compatible with fissured sides. Nothing is
more common than to see a glacier with its sides deeply cut, and its
central portions compact; this, indeed, is always the case where the
glacier moves down a bed of uniform inclination.
But supposing that the bed is not uniform--that the valley through which
the glacier moves changes its inclination abruptly, so as to compel the
ice to pass over a brow; the glacier is then circumstanced like a stick
which we try to break by holding its two ends and pressing it against
the knee. The brow, where the bed changes its inclination, represents
the knee in the case of the stick, while the weight of the glacier
itself is the force that tends to break it. It breaks; and fissures are
formed across the glacier, which are hence called _transverse
crevasses_.
[Sidenote: GRINDELWALD GLACIER.]
No glacier with which I am acquainted illustrates the mechanical laws
just developed more clearly and fully than the Lower glacier of
Grindelwald. Proceeding along the ordinary track beside the glacier, at
about an hour's distance from the village the traveller reaches a point
whence a view of the glacier is obtained from the heights above it. The
marginal fissures are very cleanly cut, and point nearly in the
direction already indicated; the glacier also changes its inclination
several times along the distance within the observer's view. On crossing
each brow the glacier is broken across, and a series of transverse
crevasses is formed, which follow each other down the slope. At the
bottom of the slope tension gives place to pressure, the walls of the
crevasses are squeezed together, and the chasms closed up. They remain
closed along the comparatively level space which stretches between the
base of one slope and the brow of the next; but here the glacier is
again transversely broken, and continues so until the base of the second
slope is reached, where longitudinal pressure instead of longitudinal
strain begins to act, and the fissures are closed as before. In Fig. 27A
I have given a sketchy section of a portion of the glacier, illustrating
the formation of the crevasses at the top of a slope, and their
subsequent obliteration at its base.
[Sidenote: COMPRESSION AND TENSION.]
[Illustration: Fig. 27A, B. Section and Plan of a portion of the Lower
Grindelwald Glacier.]
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