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
A good illustration of the principle here alluded to may be sometimes seen
in the neighbourhood of a volcano, when a section, whether natural or
artificial, has laid open to view a succession of various-coloured layers
of sand and ashes, which have fallen in showers upon uneven ground. Thus
let A B (fig. 1.) be two ridges, with an intervening valley. These original
inequalities of the surface have been gradually effaced by beds of sand and
ashes _c_, _d_, _e_, the surface at e being quite level. It will be seen
that although the materials of the first layers have accommodated
themselves in a great degree to the shape of the ground A B, yet each bed
is thickest at the bottom. At first a great many particles would be carried
by their own gravity down the steep sides of A and B, and others would
afterwards be blown by the wind as they fell off the ridges, and would
settle in the hollow, which would thus become more and more effaced as the
strata accumulated from _c_ to _e_. This levelling operation may perhaps be
rendered more clear to the student by supposing a number of parallel
trenches to be dug in a plain of moving sand, like the African desert, in
which case the wind would soon cause all signs of these trenches to
disappear, and the surface would be as uniform as before. Now, water in
motion can exert this levelling power on similar materials more easily
than air, for almost all stones lose in water more than a third of the
weight which they have in air, the specific gravity of rocks being in
general as 2-1/2 when compared to that of water, which is estimated at 1.
But the buoyancy of sand or mud would be still greater in the sea, as the
density of salt water exceeds that of fresh.
Yet, however uniform and horizontal may be the surface of new deposits in
general, there are still many disturbing causes, such as eddies in the
water, and currents moving first in one and then in another direction,
which frequently cause irregularities. We may sometimes follow a bed of
limestone, shale, or sandstone, for a distance of many hundred yards
continuously; but we generally find at length that each individual stratum
thins out, and allows the beds which were previously above and below it to
meet. If the materials are coarse, as in grits and conglomerates, the same
beds can rarely be traced many yards without varying in size, and often
coming to an end abruptly. (See fig. 2.)
[Illustration: Fig. 2. Section of strata of sandstone, grit,
and conglomerate.]
[Illustration: Fig. 3. Section of sand at Sandy Hill, near Biggleswade,
Bedfordshire. Height 20 feet. (Greensand formation.)]
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