Soils, their formation, properties, composition, and relations to climate and plant growth in the humid and arid regionsHilgard, Eugene W. (Eugene Woldemar)
Science
Soils, their formation, properties, composition, and relations to climate and plant growth in the humid and arid regions
Hilgard, Eugene W. (Eugene Woldemar)
Soils
_Evaporation from Reservoirs and Ditches._—The evaporation from
water-surfaces especially may, in many cases, exceed the rainfall of
the year, so as to materially diminish the available water-supply
in reservoirs. Thus the annual evaporation from the reservoir-lakes
forming part of the water-supply of the city of San Francisco, ranges
from 40 to 50 inches, while the rainfall averages less than 24 inches.
Were it not, then, for the prevention of evaporation by a covering
of dry earth during summer, no moisture would remain in the ground
to sustain vegetation. In the cool coast climate of Berkeley, Cal.,
directly opposite the Golden Gate and subject to its summer fogs,
evaporation from a water-surface maintaining the average climatic
temperature of 60°, was found to be ¾ inch during the month from
the middle of July to the middle of August, 1904. But at the high
temperatures and low degree of air-saturation prevailing in the great
interior valley, or in the Colorado desert, the evaporation from
water-surfaces is enormously increased, exceeding even the figure given
in the table for Bombay. Hence the great importance of preventing all
avoidable evaporation, particularly in the use of irrigation water.
_Prevention of Evaporation; Protective Surface Layer._—The loose
tilth of the surface which is so conducive to the rapid absorption of
surface-water, is also, broadly speaking, the best means of reducing
evaporation to the lowest possible point. For while it is true that the
floccules of well-tilled soil permit of the ready access of air, and
therefore of evaporation, it is also true that these relatively coarse
compound particles are incapable of withdrawing capillary moisture
from the denser soil or subsoil underneath; just as a dry sponge is
incapable of absorbing any moisture from a wet brick, while a dry
brick will readily withdraw nearly all the water contained in the
relatively large pores of the sponge (see chap. 11). A layer of loose,
dry surface-soil is therefore an excellent preventive of evaporation of
the moisture from soils, and may be regarded as the natural and most
available means to be used by the farmer, both for the prevention of
evaporation and to moderate the access of excessive heat and dryness to
the active roots.
As regards the desirable thickness of this protective layer of tilled
surface-soil, it should be kept in mind that in the humid region, where
rain can be expected at intervals of from one to three weeks, the
feeding roots may usually be found within a few inches of the surface;
while in the arid region, where irrigation is practiced at long
intervals or sometimes not at all, so that no water enters the soil
oftener than from two to six months, the roots necessarily vegetate at
lower depths, and hence the protective surface-layer can, and should
be, of greater thickness, to prevent the penetration of excessive heat
and dryness during the long interval.
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