Outlines of the Earth's History: A Popular Study in PhysiographyShaler, Nathaniel Southgate
History
Outlines of the Earth's History: A Popular Study in Physiography
Shaler, Nathaniel Southgate
Physical geography
As long as the region occupied by permanent snow is limited to sharp
mountain peaks, relief by the precipitation of large masses to the
level below the snow line is easily accomplished, but manifestly this
kind of a discharge can only be effective from a very small field.
Where the relief is not brought about by these tumbles of snow,
another mode of gravitative action accomplishes the result, though in
a more roundabout way, through the mechanism of glaciers.
We have already noted the fact that the winter's snow upon our
hillsides undergoes a movement in the direction of the slope. What we
have now to describe in a rather long story concerning glaciers rests
upon movements of the same nature, though they are in certain features
peculiarly dependent on the continuity of the action from year to
year. It is desirable, however, that the student should see that there
is at the foundation no more mystery in glacial motion than there is
in the gradual descent of the snow after it has lain a week on a
hillside. It is only in the scale and continuity of the action that
the greatest glacial envelope exceeds those of our temporary
winters--in fact, whenever the snow falls the earth it covers enters
upon an ice period which differs only in degree from that from which
our hemisphere is just escaping.
Where the reader is so fortunate as to be able to visit a region of
glaciers, he had best begin his study of their majestic phenomena by
ascending to those upper realms where the snow accumulates from year
to year. He will there find the natural irregularities of the rock
surface in a measure evened over by a vast sheet of snow, from which
only the summits of the greater mountains rise. He may soon satisfy
himself that this sheet is of great depth, for here and there it is
intersected by profound crevices. If the visit is made in the season
when snow falls, which is commonly during most of the year, he may
observe, as before noted in our winter's snow, that the deposit,
though at first flaky, attains at a short distance below the surface a
somewhat granular character, though the shotlike grains fall apart
when disturbed. Yet deeper, ordinarily a few feet below the surface,
these granules are more or less cemented together; the mass thus loses
the quality of snow, and begins to appear like a whitish ice. Looking
down one of the crevices, where the light penetrates to the depth of a
hundred feet or more, he may see that the bluish hue somewhat
increases with the depth. A trace of this colour is often visible even
in the surface snow on the glacier, and sometimes also in our ordinary
winter fields. In a hole made with a stick a foot or more in depth a
faint cerulean glimmer may generally be discerned; but the increased
blueness of the ice as we go down is conspicuous, and readily leads us
to the conclusion that the air, to which, as we before noted, the
whiteness of the snow is due, is working out of the mass as the
process of compaction goes on.
Public-domain text, read in full here on John Shaqi.
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