The Ancient Volcanoes of Great Britain, Volume 1 (of 2)Geikie, Archibald
History
The Ancient Volcanoes of Great Britain, Volume 1 (of 2)
Geikie, Archibald
Volcanoes -- Great Britain
Any cause which will diminish the pressure may allow the intensely hot
material within the globe to pass into the liquid state. There is one
known cause which will bring about this result. The downward increment
of temperature proves that our planet is continually losing heat. As
the outer crust is comparatively cool, and does not become sensibly
hotter by the uprise of heat from within, the hot nucleus must cool
faster than the crust is doing. Now cooling involves contraction. The
hot interior is contracting faster than the cooler shell which encloses
it, and that shell is thus forced to subside. In its descent it has to
adjust itself to a constantly diminishing diameter. It can do so only
by plication or by rupture.
When the terrestrial crust, under the strain of contraction, is
compressed into folds, the relief thus obtained is not distributed
uniformly over the whole surface of the planet. From an early
geological period it appears to have followed certain lines. How these
came to be at first determined we cannot tell. But it is certain
that they have served again and again, during successive periods of
terrestrial readjustment. These lines of relief coincide, on the whole,
with the axes of our continents. The land-areas of the globe may be
regarded as owing their existence above sea-level to this result of
terrestrial contraction. The crust underneath them has been repeatedly
wrinkled, fractured and thrust upward by the vast oceanic subsidence
around them. The long mountain-chains are thus, so to speak, the crests
of the waves into which the crust has from time to time been thrown.
Again, the great lines of fracture in the crust of the earth probably
lie in large measure within the land-areas, or at least parallel with
their axes and close to their borders. Where the disposition of the
chief ruptures and of the predominant plications can be examined,
these leading structural features are found to be, on the whole,
coincident. In the British Islands, for instance, the prevalent trend
of the axes of folding from early Palæozoic to Tertiary time has
been from south-west to north-east. How profoundly this direction
of earth-movement has affected the structure of the region is shown
by any ordinary map, in the long hill-ranges of the land and in the
long inlets of the sea. A geological map makes the dependence of the
scenery upon the building of the rocks still more striking. Not only
have these rocks been plicated into endless foldings, the axes of
which traverse the British Islands with a north-easterly trend: they
have likewise been dislocated by many gigantic ruptures, which tend on
the whole to follow the same direction. The line of the Great Glen,
the southern front of the Highlands, and the northern boundary of the
Southern Uplands of Scotland, are conspicuous examples of the position
and effect of some of the greater fractures in the structure of this
country.
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