The Forms of Water in Clouds and Rivers, Ice and GlaciersTyndall, John
Science
The Forms of Water in Clouds and Rivers, Ice and Glaciers
Tyndall, John
Clouds; Glaciers; Ice; Rivers; Water
472. That this is so will be evident to you in a moment. Let the
adjacent figure represent the channel of the glacier moving in the
direction of the arrow. Suppose three circles to be marked upon the
ice, one at the centre and the two others at the sides. In a glacier
of uniform inclination all these circles would move downward, the
central one only remaining a circle. By the retardation of the sides
the marginal circles would be drawn out to ovals. The two circles
would be _elongated_ in one direction, and _compressed_ in another.
Across the long diameter, which is the direction of strain, we have
the marginal crevasses; across the short diameter _m n_, which is the
direction of pressure, we have the _marginal veined structure_.
[Illustration]
473. This association of pressure and structure is invariable. At
the bases of the cascades, where the inclination of the bed of the
glacier suddenly changes, the pressure in many cases suffices not
only to close the crevasses but to violently squeeze the ice. At
such places the structure always appears, sweeping quite across
the glacier. When two branch glaciers unite, their mutual thrust
intensifies the pre-existing marginal structure of the branches,
and developes new planes of lamination. Under the medial moraines,
therefore, we have usually a good development of the structure. It
is finely displayed, for example, under the great medial moraine of
the glacier of the Aar.
474. Upon this glacier, indeed, the blue veins were observed
independently three years after M. Guyot had first described them. I
say independently, because M. Guyot's description, though written in
1838, remained imprinted, and was unknown in 1841 to the observers on
the Aar. These were M. Agassiz and Professor Forbes. To the question
of structure Professor Forbes subsequently devoted much attention,
and it was mainly his observations and reasonings that gave it the
important position now assigned to it in the phenomena of glaciers.
475. Thus without quitting the glaciers themselves, we establish
the connexion between pressure and structure. Is there anything in
our previous scientific experience with which these facts may be
connected? The new knowledge of nature must always strike its roots
into the old, and spring from it as an organic growth.
§ 66. _Slate Cleavage and Glacier Lamination_.
476. M. Guyot threw out an exceedingly sagacious hint, when he
compared the veined structure to the cleavage of slate rocks. We must
learn something of this cleavage, for it really furnishes the key to
the problem which now occupies us. Let us go then to the quarries
of Bangor or Cumberland, and observe the quarrymen in their sheds
splitting the rocks. With a sharp point struck skilfully into the
edge of the slate, they cause it to divide into thin plates, fit for
roofing or ciphering, as the case may be. The surfaces along which
the rock cleaves are called its _planes of cleavage_.
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