The Geography of the Region about Devil's Lake and the Dalles of the Wisconsin: With Some Notes on Its Surface GeologySalisbury, Rollin D.
Science
The Geography of the Region about Devil's Lake and the Dalles of the Wisconsin: With Some Notes on Its Surface Geology
Salisbury, Rollin D.
Physical geography; Wisconsin -- Description and travel
Since in its final retreat the margin of the ice must have stood at all
points once covered by it, these submarginal accumulations of drift must
have been made over the whole country once covered by the ice. The
deposits of drift made beneath the marginal part of the ice during its
retreat, would either cover the deposits made under the body of the ice
at an earlier time, or be left alongside them. The constitution of the
two phases of till, that deposited during the advance of the ice, and
that deposited during its retreat, is essentially the same, and there
is nothing in their relative positions to sharply differentiate them.
They are classed together as _subglacial till_.
Subglacial till was under the pressure of the overlying ice. In keeping
with these conditions of accumulation, the till often possesses a
firmness suggestive of great compression. Where its constitution is
clayey it is often remarkably tough. Where this is the case, the quality
here referred to has given rise to the suggestive name "hard pan." Where
the constitution of the till is sandy, rather than clayey, this firmness
and toughness are less developed, or may be altogether wanting, since
sand cannot be compressed into coherent masses like clay.
_Constitution._--The till is composed of the more or less comminuted
materials derived from the land across which the ice passed. The soil
and all the loose materials which covered the rock entered into its
composition. Where the ice was thick and its action vigorous, it not
only carried away the loose material which it found in its path, but,
armed with this material, it abraded the underlying rock, wearing down
its surface and detaching large and small blocks of rock from it. It
follows that the constitution of the till at any point is dependent upon
the nature of the soil and rock from which it was derived.
If sandstone be the formation which has contributed most largely to the
till, the matrix of the till will be sandy. Where limestone instead of
sandstone made the leading contribution to it, the till has a more
earthy or clayey matrix. Any sort of rock which may be very generally
reduced to a fine state of division under the mechanical action of the
ice, will give rise to clayey till.
The nature and the number of the bowlders in the till, no less than the
finer parts, depend on the character of the rock overridden. A hard and
resistant rock, such as quartzite, will give rise to more bowlders in
proportion to the total amount of material furnished to the ice, than
will softer rock. Shale or soft sandstone, possessing relatively slight
resistance, will be much more completely crushed. They will, therefore,
yield proportionately fewer bowlders than harder formations, and more
of the finer constituents of till.
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