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
Slope, roughness of bed, and volume affect the movement of glaciers
somewhat as they affect the movement of rivers. The temperature of
the water, on the other hand, has little effect on the flow of a
river so long as it remains unfrozen; but the effect of temperature
on the motion of ice is most important. In many cases, indeed, the
temperature, together with the water that is incidental to it, seems
to be the chief factor in determining the rate of movement. The way in
which its effects are felt will be discussed later.
=Likenesses and unlikenesses of glaciers and rivers.=—Many of the
characteristics of a valley glacier may be understood from the study of
the accompanying figure (Fig. 237) of the White (Alaska) glacier. From
this figure it will be seen that the glacier is an elongate river-like
body, following the curves of the valley in stream-like fashion. It
has its origin in the snows collected on the mountain heights seen
in the distance, and it works its way down the valley in a manner
which, in the aggregate, is similar to the movement of a stiff liquid.
The likeness to a river extends to many details. Not only does the
center move faster than the sides, and the upper part faster than the
bottom, as in the case of streams, but the movement is more rapid in
constricted portions of the valley and slower in the broader parts.
These and other likenesses, some of which are apparent rather than
real, have given origin to the view that glacier ice moves like a stiff
viscous liquid.
[Illustration: +Fig.+ 237.—White glacier (central background) joining a
larger glacier (foreground), Alaska. (Reid.)]
But while the points of likeness between glaciers and rivers are
several, their differences are at least equally numerous and
significant. The trains of débris on the surface (the dark bands in the
illustration), like the central currents of streams, pass nearer the
projecting points of the valley walls and farther from the receding
bends; but beyond this point the analogy fails, for the trains of
débris on the ice do not conform in detail to the courses of the
currents of a winding stream, nor is there evidence of the rotatory
motion that characterizes river water. Furthermore, the glacier is
readily fractured, as the numerous gaping crevices on many glaciers
show. The crevasses are sometimes longitudinal, sometimes transverse,
and sometimes oblique. In the case of Arctic glaciers, longitudinal
crevassing is especially conspicuous.
[Illustration: +Fig.+ 238.—Cracking of glacier due to change in grade
of bed. A North Greenland glacier overriding a mound of
moraine-stuff.]
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