A Manual of Elementary Geology: or, The Ancient Changes of the Earth and its Inhabitants as Illustrated by Geological MonumentsLyell, Charles, Sir
Science
A Manual of Elementary Geology: or, The Ancient Changes of the Earth and its Inhabitants as Illustrated by Geological Monuments
Lyell, Charles, Sir
Geology
On the other hand, a machinery of a totally different kind seems capable of
giving rise to effects of the required magnitude. It has now been
ascertained that the rising and sinking of extensive portions of the
earth's crust, whether insensibly or by a repetition of sudden shocks, is
part of the actual course of nature, and we may easily comprehend how the
land may have been exposed during these movements to abrasion by the waves
of the sea. In the same manner as a mountain mass may, in the course of
ages, be formed by sedimentary deposition, layer after layer, so masses
equally voluminous may in time waste away by inches; as, for example, if
beds of incoherent materials are raised slowly in an open sea where a
strong current prevails. It is well known that some of these oceanic
currents have a breadth of 200 miles, and that they sometimes run for a
thousand miles or more in one direction, retaining a considerable velocity
even at the depth of several hundred feet. Under these circumstances, the
flowing waters may have power to clear away each stratum of incoherent
materials as it rises and approaches the surface, where the waves exert the
greatest force; and in this manner a voluminous deposit may be entirely
swept away, so that, in the absence of faults, no evidence may remain of
the denuding operation. It may indeed be affirmed that the signs of waste
will usually be least obvious where the destruction has been most
complete; for the annihilation may have proceeded so far, that no ruins are
left of the dilapidated rocks.
Although denudation has had a levelling influence on some countries of
shattered and disturbed strata (see fig. 87. p. 63. and fig. 91. p. 69.),
it has more commonly been the cause of superficial inequalities, especially
in regions of horizontal stratification. The general outline of these
regions is that of flat and level platforms, interrupted by valleys often
of considerable depth, and ramifying in various directions. These hollows
may once have formed bays and channels between islands, and the steepest
slope on the sides of each valley may have been a sea-cliff, which was
undermined for ages, as the land emerged gradually from the deep. We may
suppose the position and course of each valley to have been originally
determined by differences in the hardness of the rocks, and by rents and
joints which usually occur even in horizontal strata. In mountain chains,
such as the Jura before described (see fig. 71. p. 55.), we perceive at
once that the principal valleys have not been due to aqueous excavation,
but to those mechanical movements which have bent the rocks into their
present form. Yet even in the Jura there are many valleys, such as C (fig.
71.), which have been hollowed out by water; and it may be stated that in
every part of the globe the unevenness of the surface of the land has been
due to the combined influence of subterranean movements and denudation.
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