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
When we remove water from the surface, we diminish the evaporation from
it, and, of course, the refrigeration which accompanies all evaporation
is diminished in proportion. Hence superficial draining ought to be
attended with an elevation of atmospheric temperature, and, in cold
countries, it might be expected to lessen the frequency of frosts.
Accordingly, it is a fact of experience that, other things being equal,
dry soils, and the air in contact with them, are perceptibly warmer
during the season of vegetation, when evaporation is most rapid, than
moist lands and the atmospheric stratum resting upon them. Instrumental
observation on this special point has not yet been undertaken on a very
large scale, but still we have thermometric data sufficient to warrant
the general conclusion, and the influence of drainage in diminishing the
frequency of frost appears to be even better established than a direct
increase of atmospheric temperature. The steep and dry uplands of the
Green Mountain range in New England often escape frosts when the Indian
corn harvest on moister grounds, five hundred or even a thousand feet
lower, is destroyed or greatly injured by them. The neighborhood of a
marsh is sure to be exposed to late spring and early autumnal frosts,
but they cease to be feared after it is drained, and this is
particularly observable in very cold climates, as, for example, in
Lapland.[327]
In England, under-drains are not generally laid below the reach of daily
variations of temperature, or below a point from which moisture might be
brought to the surface by capillary attraction and evaporated by the
heat of the sun. They, therefore, like surface drains, withdraw from
local solar action much moisture which would otherwise be vaporized by
it, and, at the same time, by drying the soil above them, they increase
its effective hygroscopicity, and it consequently absorbs from the
atmosphere a greater quantity of water than it did when, for want of
under-drainage, the subsoil was always humid, if not saturated.
Under-drains, then, contribute to the dryness as well as to the warmth
of the atmosphere, and, as dry ground is more readily heated by the rays
of the sun than wet, they tend also to raise the mean, and especially
the summer temperature of the soil.
Public-domain text, read in full here on John Shaqi.
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