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
Analogous effects are produced by other objects, of whatever form or
character, standing or lying upon the earth, and no solid can be placed
upon a flat piece of ground, without itself exposing a greater surface
than it covers. This applies, of course, to forest trees and their
leaves, and indeed to all vegetables, as well as to other prominent
bodies. If we suppose forty trees to be planted on an acre, one being
situated in the centre of every square of two rods the side, and to grow
until their branches and leaves everywhere meet, it is evident that,
when in full foliage, the trunks, branches, and leaves would present an
amount of thermoscopic surface much greater than that of an acre of bare
earth; and besides this, the fallen leaves lying scattered on the
ground, would somewhat augment the sum total.[131] On the other hand,
the growing leaves of trees generally form a succession of stages, or,
loosely speaking, layers, corresponding to the animal growth of the
branches, and more or less overlying each other. This disposition of the
foliage interferes with that free communication between sun and sky
above, and leaf surface below, on which the amount of radiation and
absorption of heat depends. From all these considerations, it appears
that though the effective thermoscopic surface of a forest in full leaf
does not exceed that of bare ground in the same proportion as does its
measured superficies, yet the actual quantity of area capable of
receiving and emitting heat must be greater in the former than in the
latter case.[132]
It must further be remembered that the form and texture of a given
surface are important elements in determining its thermoscopic
character. Leaves are porous, and admit air and light more or less
freely into their substance; they are generally smooth and even glazed
on one surface; they are usually covered on one or both sides with
spiculae, and they very commonly present one or more acuminated points in
their outline--all circumstances which tend to augment their power of
emitting heat by reflection or radiation. Direct experiment on growing
trees is very difficult, nor is it in any case practicable to
distinguish how far a reduction of temperature produced by vegetation is
due to radiation, and how far to exhalation of the fluids of the plant
in a gaseous form; for both processes usually go on together. But the
frigorific effect of leafy structure is well observed in the deposit of
dew and the occurrence of hoarfrost on the foliage of grasses and other
small vegetables, and on other objects of similar form and consistence,
when the temperature of the air a few yards above has not been brought
down to the dew point, still less to 32 deg., the degree of cold required to
congeal dew to frost.[133]
b. _Trees as Conductors of Heat._
Public-domain text, read in full here on John Shaqi.
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