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
It is not to be inferred that the method of valley development which
has been sketched is the only one. The processes of valley development
are complex, and the history of some valleys has run a different
course; yet the processes outlined above are in operation in all cases,
and they were probably the most important ones in the development of
the first drainage system on any land surface. As will be seen in the
sequel the history of valleys is subject to serious accidents, and they
are often of such a nature as to mask the simplicity of the more normal
processes.
[Illustration: +Fig.+ 51.—Diagram illustrating the further development
of Fig. 49. The land here has been reduced greatly, though not yet to
base-level.]
_The permanent stream._—From the foregoing discussion, it is seen that
a valley may be developed by the run-off of successive showers. If
supplied only from this source surface streams would cease to flow soon
after the rain ceased to fall, and a valley might attain considerable
size without possessing a permanent stream. How does the valley
developed by the run-off of successive showers come to have a permanent
stream? The answer to this question involves a brief consideration of
that part of the rainfall which sinks beneath the surface.
If wells be sunk in a flat region of uniform structure and composition
the water in them is generally found to stand at a nearly common level.
The meaning of this fact is not far to seek. If a hole 60 feet deep
fills with water up to a point 20 feet from the surface, it is because
the material in which the well is sunk is full of water up to that
level. When the well is dug the water leaks into it, filling the hole
up to the level to which the rock (or subsoil) is itself full. This
level, below which the rock and subsoil (down to unknown depths) are
full of water, is known as the _ground-water level_, _ground-water
surface_, or _water-table_.
The ground-water level fluctuates. In a wet season it rises, because
more water has fallen and sunk beneath the soil; but several processes
at once conspire to bring it down again. Where there is growing
vegetation its roots draw up water from beneath, and evaporation also
goes on independently of vegetation. The water is drawn out through
wells and runs out through openings. It may also flow underground from
one region to another where the ground-water surface is lower. All
these processes depress the ground-water surface.
[Illustration: +Fig.+ 52.—Diagram illustrating the fluctuation of a
ground-water surface. _a_ = wet-weather ground-water level; _b_ =
ground-water level during drought. Well No. 1 will contain water
during the wet season, but will go dry in times of drought. Well No.
2 will be permanent.]
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