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
Near the northwest corner of this flat, an exposure in the sediments of
the old lake bed shows the curiously contorted layers of sand, silt, and
clay represented in Plate XXXVIII. The layers shown in the
figure are but a few feet below the level of the flat which marks the
site of the lake. It will be seen that the contorted layers are between
two series of horizontal ones. The material throughout the section is
made up of fine-grained sands and clays, well assorted. That these
particular layers should have been so much disturbed, while those below
and above remained horizontal, is strange enough. The grounding of an
iceberg on the surface before the overlying layers were deposited, the
action of lake ice, or the effect of expansion and contraction due to
freezing and thawing, may have been responsible for the singular
phenomenon. Contorted laminæ are rather characteristic of the deposits
of stratified drift.
_After the Ice Had Disappeared._
As has already been indicated, the irregular deposition of
glacial drift gave rise to many depressions without outlets in which
surface waters collected after the ice had disappeared, forming ponds or
lakes. So abundant are lakes and ponds and marshes in recently glaciated
regions and so rare elsewhere, that they constitute one of the more
easily recognized characteristics of a glaciated region.
After the ice had melted, the mantle of drift which it left was
sometimes so disposed as to completely obliterate preglacial valleys.
More commonly it filled preglacial valleys at certain points only. In
still other cases a valley was not filled completely at any point,
though partially at many. In this last case, the partial fillings at
various points constituted dams above which drainage was ponded, making
lakes. If the dams were not high enough to throw the drainage out of the
valley, the lakes would have their outlets over them. The drift dam
being unconsolidated would be quickly cut down by the outflowing water,
and the lake level lowered. When the dam was removed or cut to its base,
the lake disappeared and drainage followed its preglacial course.
In case the valley was completely filled, or completely filled at
points, the case was very different. The drainage on the drift surface
was established with reference to the topography which obtained when the
ice departed, and not with reference to the preglacial valleys. Wherever
the preglacial valleys were completely filled, the postglacial drainage
followed lines which were altogether independent of them. When
preglacial valleys were filled by the drift in spots only, the
postglacial streams followed them where they were not filled, only to
leave them where the blocking occurred. In the former case the present
drainage is through valleys which are preglacial in some places, and
postglacial in others.
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