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
Other things being equal the greater the amount of precipitation
the more rapid the corrasion and transportation. Much, however,
depends on its distribution in time. A given amount of rainfall may
be distributed equally through the year, or it may fall during a
wet season only. The maximum inequality of distribution would occur
if all the rainfall of a given period were concentrated in a single
shower. With such concentration the volume of water flowing off over
the surface immediately after the down-pour would be greater than
under any other conditions of precipitation, and since velocity is
increased with volume, and erosive power with velocity, it follows
that the erosive power of a given amount of water would be greater
under these circumstances than under any other. Furthermore, a larger
proportion of the precipitation would run off over the surface under
these circumstances than under any other, for less of it would sink
beneath the surface and less would be evaporated. If erosive power
and rate of erosion were equal terms, this would therefore be the
condition for greatest erosion; but erosive power and rate of erosion
do not always correspond. If the water falling in this way could
get hold of all the material it could carry, extreme concentration
of precipitation would be the condition favorable for most rapid
erosion. But if the amount of available material for transportation
is slight, a large part of the force of the water could not be
utilized in erosion. It follows that if there were a large amount of
disintegrated material on the surface, erosion would be greater the
greater the concentration of precipitation. If, on the other hand,
there were but little disintegrated material on the surface, frequent
showers, with intervening periods when conditions were favorable for
weathering, that is, for preparing material for transportation, might
be more favorable for rapid erosion. While the total energy of running
water available for erosion under these conditions would be less than
before, there might in the long run be more material for transport;
for weathering in the presence of moisture, and all that goes with
it, might be more effective in preparing material for transportation,
than weathering during the long periods of drought which would occur
if the precipitation were concentrated to its maximum. Temperature
favoring, the uniform distribution of moisture through the year would
allow the growth of vegetation, which, although favoring some processes
of weathering, retards erosion in general. While therefore it is not
possible to say what distribution of rainfall favors most rapid erosion
without knowing the nature of the surface on which it is to fall,
enough has been said to show that the problem is by no means a simple
one. Some of the most striking phases of topography developed by
erosion, such as those of the Bad Lands (Figs. 75 to 78, and 108), are
developed where the rainfall is unequally distributed in time, and too
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