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
The ground moraine constitutes the great body of the glacial drift.
_Bowlder clay_, a term descriptive of its constitution in some places,
and _till_, are other terms often applied to the ground moraine. The
ground moraine consists of all the drift which lodged beneath the ice
during its advance, all that was deposited back from its edge while its
margin was farthest south, and most of that which was deposited while
the ice was retreating. From this mode of origin it is readily seen that
the ground moraine should be essentially as widespread as the ice
itself. Locally, however, it failed of deposition. Since it constitutes
the larger part of the drift, the characteristics already enumerated
as belonging to drift in general are the characteristics of the
till. Wherever obstacles to the progress of the ice lay in its path,
there was a chance that these obstacles, rising somewhat into the
lower part of the ice, would constitute barriers against which debris in
the lower part of the ice would lodge. It might happen also that the
ice, under a given set of conditions favoring erosion, would gather a
greater load of rock-debris than could be transported under the changed
conditions into which its advance brought it. In this case, some part of
the load would be dropped and over-ridden. Especially near the margin of
the ice where its thickness was slight and diminishing, the ice must
have found itself unable to carry forward the loads of debris which it
had gathered farther back where its action was more vigorous. It will be
readily seen that if not earlier deposited, all material gathered by the
under surface of the ice would ultimately find itself at the edge of the
glacier, for given time enough, ablation will waste all that part of the
ice occupying the space between the original position of the debris, and
the margin of the ice. Under the thinned margin of the ice, therefore,
considerable accumulations of drift must have been taking place while
the ice was advancing. While the edge of the ice sheet was advancing
into territory before uninvaded, the material accumulated beneath its
edge at one time, found itself much farther from the margin at another
and later time. Under the more forcible ice action back from the margin,
the earlier accumulations, made under the thin edge, were partially or
wholly removed by the thicker ice of a later time, and carried down to
or toward the new and more advanced margin. Here they were deposited, to
be in turn disturbed and transported still farther by the farther
advance of the ice.
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