But most of the mountain ranges of the earth, and some of the
greatest, such as the Alps and the Himalayas, were originally
mountains of folding. The earth's crust has wrinkled into a fold; or
into a series of folds, forming a series of parallel ridges and
intervening valleys; or a number of folds have been mashed together
into a vast upswelling of the crust, in which the layers have been so
crumpled and twisted, overturned and crushed, that it is exceedingly
difficult to make out the original structure.
The close and intricate folds seen in great mountain ranges were
formed, as we have seen, deep below the surface, within the zone of
folding. Hence they may never have found expression in any individual
surface features. As the result of these deformations deep under
ground the surface was broadly lifted to mountain height, and the
crumpled and twisted mountain structures are now to be seen only
because erosion has swept away the heavy cover of surface rocks under
whose load they were developed.
[Illustration: Fig. 179. Section of a Portion of the Alps]
When the structure of mountains has been deciphered it is possible to
estimate roughly the amount of horizontal compression which the region
has suffered. If the strata of the folds of the Alps were smoothed
out, they would occupy a belt seventy-four miles wider than that to
which they have been compressed, or twice their present width. A
section across the Appalachian folds in Pennsylvania shows a
compression to about two thirds the original width; the belt has been
shortened thirty-five miles in every hundred.
Considering the thickness of their strata, the compression which
mountains have undergone accounts fully for their height, with enough
to spare for all that has been lost by denudation.
The Appalachian folds involve strata thirty thousand feet in
thickness. Assuming that the folded strata rested on an unyielding
foundation, and that what was lost in width was gained in height, what
elevation would the range have reached had not denudation worn it as
it rose?
=The life history of mountains.= While the disturbance and uplift of
mountain masses are due to deformation, their sculpture into ridges
and peaks, valleys and deep ravines, and all the forms which meet the
eye in mountain scenery, excepting in the very youngest ranges, is due
solely to erosion. We may therefore classify mountains according to
the degree to which they have been dissected. The Juras are an example
of the stage of early youth, in which the anticlines still persist as
ridges and the synclines coincide with the valleys; this they owe as
much to the slight height of their uplift as to the recency of its
date (Fig. 180).
[Illustration: Fig. 180. Section of a Portion of the Jura
Mountains]
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account