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
=Physical constitution.=—Clastic rocks may be firmly cemented, or their
constituents may be loosely bound together. The less the coherence the
more ready the disintegration, and the finer the particles the more
easily are they carried away. When the particles in transportation
are angular they effect more wear on the bed over which they move,
and on one another, than when they are round. The difference is great
where the particles are large, and little where they are very small.
If the materials carried be harder than the bed over which they pass,
corrasion of the latter is favored.
=Chemical composition.=—Something also depends on the chemical
composition of the rock, since this affects its solubility, and
therefore its rate of decomposition. The more soluble the rock the
larger the proportion of it which will be taken away in solution; but
it does not follow that the most soluble rock will be most rapidly
eroded, since the rate of erosion depends on abrasion as well as
solution, and a rock which is readily soluble, as rocks go, may be less
easily abraded than a rock which is made of discrete and insoluble
particles bound together by a soluble cement. In such rocks, for
example a sandstone in which the grains are cemented together by
lime carbonate, the solution of the cement sets free a considerable
quantity of sand, so that a small amount of solution prepares a large
amount of sediment for removal. A stream might cut its valley much
more rapidly in such a sandstone than in a compact limestone, though
the latter is, as a whole, the more soluble. The constituent minerals
of crystalline rocks resist solution and decay unequally, and when any
one is dissolved or decomposed the rock crumbles and the less soluble
constituents are ready for removal by mechanical means. So long as the
material loosened by disintegration is removed, chemical heterogeneity
favors erosion; but if the loosened débris is not removed erosion is
not favored by chemical heterogeneity. In such a case erosion would be
most rapid where the rock was most soluble.
=Structure.=—The structure of the rock has much to do with the rate of
its erosion. Other things being equal, stratified rock is more readily
eroded than massive rock, since stratification-planes are planes of
cleavage, and therefore of weakness. Taking advantage of these planes
the water has less breaking to perform to reduce the material to a
transportable condition. For the same reason a thin-bedded formation is
more easily eroded than a thick-bedded one.
[Illustration: +Figs.+ 103 and 104.—Diagrams to illustrate the fact
that a stream crosses many more cleavage-planes when the beds of rock
are inclined than when they are horizontal.]
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