The Student's Elements of GeologyLyell, Charles, Sir
Science
The Student's Elements of Geology
Lyell, Charles, Sir
Geology
The student, by referring to my “Principles of Geology,”[4] may see
that Messrs. Humphrey and Abbot, during their survey of the
Mississippi, attempted to make accurate measurements of the proportion
of sediment carried down annually to the sea by that river, including
not only the mud held in suspension, but also the sand and gravel
forced along the bottom.
It is evident that when we know the dimensions of the area which is
drained, and the annual quantity of earthy matter taken from it and
borne into the sea, we can affirm how much on an average has been
removed from the general surface in one year, and there seems no danger
of our overrating the mean rate of waste by selecting the Mississippi
as our example, for that river drains a country equal to more than half
the continent of Europe, extends through twenty degrees of latitude,
and therefore through regions enjoying a great variety of climate, and
some of its tributaries descend from mountains of great height. The
Mississippi is also more likely to afford us a fair test of ordinary
denudation, because, unlike the St. Lawrence and its tributaries, there
are no great lakes in which the fluviatile sediment is thrown down and
arrested in its way to the sea. In striking a general average we have
to remember that there are large deserts in which there is scarcely any
rainfall, and tracts which are as rainless as parts of Peru, and these
must not be neglected as counterbalancing others, in the tropics, where
the quantity of rain is in excess. If then, argues Mr. Geikie, we
assume that the Mississippi is lowering the surface of the great basin
which it drains at the rate of one foot in 6000 years, 10 feet in
60,000 years, 100 feet in 600,000 years, and 1000 feet in 6,000,000
years, it would not require more than about 4,500,000 years to wear
away the whole of the North American continent if its mean height is
correctly estimated by Humboldt at 748 feet. And if the mean height of
all the land now above the sea throughout the globe is 1000 feet, as
some geographers believe, it would only require six million years to
subject a mass of rock equal in volume to the whole of the land to the
action of subaërial denudation. It may be objected that the annual
waste is partial, and not equally derived from the general surface of
the country, inasmuch as plains, water-sheds, and level ground at all
heights remain comparatively unaltered; but this, as Mr. Geikie has
well pointed out, does not affect our estimate of the sum total of
denudation. The amount remains the same, and if we allow too little for
the loss from the surface of table-lands we only increase the
proportion of the loss sustained by the sides and bottoms of the
valleys, and _vice versa._[5]
Public-domain text, read in full here on John Shaqi.
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