Geology: The Science of the Earth's Crust — John Shaqi
Geology: The Science of the Earth's CrustMiller, William J. (William John)
Philosophy
Geology: The Science of the Earth's Crust
Miller, William J. (William John)
Geology
Like running water, ice may have considerable erosive power when it is
properly supplied with tools. The total erosive effect which has been,
and is now being, accomplished by ice compared with that of running
water is, however, slight. One of the main processes by which ice
erosion is accomplished is "corrasion" due to the rubbing or grinding
action of hard rock fragments frozen into the bottom and sides of the
glacier. Thick ice, shod with hard rock fragments and flowing through a
deep, narrow valley of soft rock, is especially powerful as an erosive
agent because the abrasive tools are supplied; the work to be done is
easy; and the deep ice causes great pressure on the bottom and lower
sides of the valley. Rock surfaces which have been thus subjected to
ice erosion are characteristically smoothed and more or less scratched,
striated, or ground due to the corrosive effects of small and large
rock fragments. This affords one of the best means of proving the
former presence of a glacier over a region or in a valley. A typical
V-shaped stream cut (eroded) valley is changed into one with a U-shaped
profile or cross section by glacier erosion (Plate 5).
Another important process of ice erosion is "plucking," which consists
in pushing among already more or less loosened joint blocks by the
pressure of the moving ice. The pressure thus exerted, especially by
a deep valley glacier, may be enormous. This process was an important
factor in the development of the famous Yosemite Valley, a very brief
account of whose history it will now be instructive to give.
[Illustration: Plate 3.--The Gorge of Niagara River Below the Great
Falls. The strata (containing fossils) were accumulated on the bottom
of the Silurian sea which overspread the region at least 18,000,000
years ago. Since the Ice Age or within 20,000 to 40,000 years, the
river has carved out the gorge. (_Courtesy of the Haines Photo Company,
Conneaut, Ohio._)]
[Illustration: Plate 4.--(_a_) A Winding Stream in the St. Lawrence
Valley of New York. Due to its low velocity the stream cuts its channel
down very little, but it swings or "meanders" slowly from one side of
its valley to the other, developing a wide flood plain. The stream once
flowed against the valley wall shown at the middle left. (_Photo by the
author._)]
[Illustration: Plate 4.--(_b_) Davidson Glacier, Alaska. This glacier
is at work slowly grinding down the valley floor and cutting back its
walls, thus changing the original stream-cut, V-shaped profile, like
that of Plate 5. (_Photo by Wright, U. S. Geological Survey._)]
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