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
The height of the cliff depends on the height of the land on which
the sea is advancing. Its slope may be steep or gentle (compare Figs.
303 to 306), according to the nature of the material of which it is
composed and the rapidity of the cutting. Rapid cutting tends to
produce steep cliffs and slow cutting gentle ones, for in the latter
case weathering is more important relative to the cutting, and at
sea-level (low altitudes) weathering generally tends to reduce the
angle of slope. In general, the more resistant the material the steeper
the slope of the cliff. Incoherent materials, such as sand and clay,
are not likely to form steep cliffs; but if the cutting be very rapid,
bold faces may be developed even in such materials (Fig. 307). If beds
of slight resistance at sea-level underlie beds of greater resistance,
the development of steep cliffs is favored. The structure of the
cliff-rock also has an influence on the slope. The rock may be massive
or bedded. If bedded, the beds may be horizontal, or they may dip at
any angle, in any direction. The rock, whether stratified or not, may
be abundantly or sparsely jointed. All these structures influence the
slope and configuration of the sea-cliff (see Figs. 305 to 308).
[Illustration: +Fig.+ 309.—“Old Man of Hoy.” (Geikie.)]
=Chimney-rocks, etc.=—By working in along the joints of the rock,
widening them and quarrying out the intervening blocks, pillars of
rock (“chimney-rocks,” “pulpit-rocks”) or even considerable islets are
sometimes isolated by the waves. This is most readily accomplished
where the joints converge back from the shore. A well-known example
of this sort is the “Old Man of Hoy” (Fig. 309) on the coast of the
Orkneys. A pulpit-rock or other island, or any jutting point of
rock may be pierced, giving an arch or bridge. La Roche Percée, a
steep-faced isle near Gaspé Harbor, is an example.
=Sea-caves.=—Waves sometimes excavate caves at the bases of cliffs.
This is especially likely to occur where the rock is much jointed and
where the joints are not continued to the surface in a single plane.
The bottom and roof of a sea-cave usually have a pronounced inclination
landward. If the cliff be low, the cave may be extended landward until
its roof is pierced. Through such an opening in the top of the cliff
the water of the incoming waves may be forced in the form of spray.
On the New England coast such holes are sometimes known as “spouting
horns.” Similar openings may be made, as already pointed out, by the
compression or rarefaction of the air in the cave as the wave enters or
retreats. If the roof of the cave be partially destroyed, the portion
which remains may form an arch or _bridge_. Such a bridge occurs on
Santa Cruz Island, California (Fig. 310).
[Illustration: +Fig.+ 310.—An arch developed by waves. Santa Cruz
Island, Cal. (Law.)]
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