Geology, Vol. 1 [of 3] : $b Geologic processes and their resultsSalisbury, Rollin D.
Science
Geology, Vol. 1 [of 3] : $b Geologic processes and their results
Salisbury, Rollin D.
Geology
=Drainage.=—Some of the water produced by surface melting forms little
streams on the ice. Sooner or later they plunge into crevasses or over
the sides and ends of the glacier. In the former case, they may melt
or wear out well-like passages (moulins) in the ice, and even in the
rock beneath. Much of the surface water sinks into the ice. Its ready
penetration is aided by the “dust-wells” which mark the surface of
many glaciers. In north Greenland wells which contain six or eight
inches of water at the end of a warm day are often dry in the morning.
The water has leaked out and passed to lower levels. From these and
other harmonious observations it is inferred that the superficial
part of a glacier at least is readily penetrated by water. The depth
to which surface water penetrates is undetermined, but it doubtless
varies greatly, not only in different glaciers, but in different parts
of the same glacier, and in the same part at different times. Above
the line of perennial snow there is little water either from melting
or from rain, and hence relatively slight penetration. Below the line
of perennial snow there is much melting and much rain, and here it is
probable that the water sometimes, perhaps usually, penetrates to the
bottom of the ice during the melting season, even independently of
crevasses.
Once within the glacier, the course of the water is variable.
Exceptionally it follows definite englacial channels, as shown by
springs or streams issuing from the ice at some point above its bottom
(Fig. 251). Oftener it descends or moves forward through the irregular
openings which the accidents of motion have developed. If it reaches a
level where the temperature is below its freezing-point, it congeals.
Otherwise it remains in cavities or descends to the bottom. The water
produced by melting within the glacier probably follows a similar
course. So far as these waters descend to the bottom, they join those
produced by basal melting and issue from the glacier with them. In
alpine glaciers the waters beneath the ice often unite in a common
stream in the axis of the valley, and hollow out a tunnel. Thus the
Rhone is already a considerable stream where it issues from beneath the
Rhone glacier. In the glaciers of high latitudes, subglacial tunnels
are less common and the drainage is in streams along the sides of the
glaciers or through the débris beneath and about them.
At the end of the glacier, all waters, whether they have been
superglacial, englacial or subglacial, unite to bear away the silt,
sand, gravel, and even small bowlders set free from the ice, and
to spread them in belts along the border of the ice or in trains
stretching down the valleys below. These are the most common of the
glacio-fluvial deposits.
THE WORK OF GLACIERS.
_Erosion and transportation._
Public-domain text, read in full here on John Shaqi.
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