Man and Nature; Or, Physical Geography as Modified by Human ActionMarsh, George P. (George Perkins)
Science
Man and Nature; Or, Physical Geography as Modified by Human Action
Marsh, George P. (George Perkins)
Conservation of natural resources; Human geography; Nature -- Effect of human beings on; Physical geography
The same eminent author proposes series of observations on the level of
natural lakes, especially on those without outlet, as a means of
determining the increase or diminution of precipitation in their basins,
and, of course, of measuring the effect of clearing when such
operations take place within those basins. But it must be observed that
lakes without a visible outlet are of very rare occurrence, and besides,
where no superficial conduit for the discharge of lacustrine waters
exists, we can seldom or never be sure that nature has not provided
subterranean channels for their escape. Indeed, when we consider that
most earths, and even some rocks under great hydrostatic pressure, are
freely permeable by water, and that fissures are frequent in almost all
rocky strata, it is evident that we cannot know in what proportion the
depression of the level of a lake is to be ascribed to infiltration, to
percolation, or to evaporation.[189] Further, we are, in general, as
little able to affirm that a given lake derives all its water from the
fall of rain within its geographical basin, or that it receives all the
water that falls in that basin except what evaporates from the ground,
as we are to show that all its superfluous water is carried off by
visible channels and by evaporation.
Suppose the strata of the mountains on two sides of a lake, east and
west, to be tilted in the same direction, and that those of the hill on
the east side incline toward the lake, those of that on the west side
from it. In this case a large proportion of the rain which falls on the
eastern slope of the eastern hill may find its way between the strata to
the lake, and an equally large proportion of the precipitation upon the
eastern slope of the western ridge may escape out of the basin by
similar channels. In such case the clearing of the _outer_ slopes of
either or both mountains, while the forests of the _inner_ declivities
remained intact, might affect the quantity of water received by the
lake, and it would always be impossible to know to what territorial
extent influences thus affecting the level of a lake might reach.
Boussingault admits that extensive clearing _below_ an alpine lake, even
at a considerable distance, might affect the level of its waters. How it
would produce this influence he does not inform us, but, as he says
nothing of the natural subterranean drainage of surface waters, it is to
be presumed that he refers to the supposed diminution of the quantity of
rain from the removal of the forest, which might manifest itself at a
point more elevated than the cause which occasioned it. The elevation or
depression of the level of natural lakes, then, cannot be relied upon as
a proof, still less as a measure of an increase or diminution in the
fall of rain within their geographical basins, resulting from the
felling of the woods which covered them; though such phenomena afford
very strong presumptive evidence that the supply of water is somehow
Public-domain text, read in full here on John Shaqi.
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