The Earth as Modified by Human ActionMarsh, George P. (George Perkins)
History
The Earth 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 hygroscopicity of humus or vegetable earth is much greater than that
of any mineral soil, and consequently forest ground, where humus
abounds, absorbs the moisture of the atmosphere more rapidly and in
larger proportion than common earth. The condensation of vapor by
absorption develops heat, and consequently elevates the temperature of
the soil which absorbs it, together with that of air in contact with the
surface. Von Babo found the temperature of sandy ground thus raised from
68 degrees to 80 degrees F., that of soil rich in humus from 68 degrees
to 88 degrees. The question of the influence of the woods on temperature
does not, in the present state of our knowledge, admit of precise
solution, and, unhappily, the primitive forests are disappearing so
rapidly before the axe of the woodman, that we shall never be able to
estimate with accuracy the climatological action of the natural wood,
though all the physical functions of artificial plantations will,
doubtless, one day be approximately known.
But the value of trees as a mechanical screen to the soil they cover,
and often to ground far to the leeward of them, is most abundantly
established, and this agency alone is important enough to justify
extensive plantation in all countries which do not enjoy this
indispensable protection.
Influence of Forests as Inorganic on the Humidity of the Air and the
Earth.
The most important hygroscopic as well as thermoscopic influence of the
forest is, no doubt, that which it exercises on the humidity of the air
and the earth, and this climatic action it exerts partly as dead, partly
as living matter. By its interposition as a curtain between the sky and
the ground it both checks evaporation from the earth, and mechanically
intercepts a certain proportion of the dew and the lighter showers,
which would otherwise moisten the surface of the soil, and restores it
to the atmosphere by exhalation; [Footnote: Mangotti had observed and
described, in his usual picturesque way, the retention of rain-water by
the foliage and bark of trees, but I do not know that any attempts were
made to measure the quantity thus intercepted before the experiments of
Becquerel, communicated to the Academy of Sciences in 1866. These
experiments embraced three series of observations continued respectively
for periods of a year, a month, and two days. According to Becquerel's
measurements, the quantity falling on bare and on wooded soil
respectively was as 1 to 0.07; 1 to 0.5; and 1 to 0.6, or, in other
words, he found that only from five-tenths to sixty-seven hundredths of
the precipitation reached the ground.--Comptes Rendus de l'Academie des
Sciences, 1866. It seemed, indeed, improbable that in rain-storms which
last not hours but whole days in succession, so large a proportion of
the downfall should continue to be intercepted by forest vegetation
after the leaves, the bark, and the whole framework of the trees were
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