The distribution of these subterranean waters, and the simple laws which
regulate their circulation, afford us one of the most interesting
glimpses into the physical economy of our globe. We know that the
greater part of the earth’s surface is composed of stratified rocks, or
alternate beds of impermeable clay and porous limestone or sand, which
were originally deposited in horizontal layers, but have since been more
or less displaced and set on edge by upheaving forces. Wherever
permeable beds of limestone or sand crop out on the surface of the land,
the residuary portions of rain-water which are not disposed of by floods
or by evaporation, must necessarily penetrate into the pores and
fissures, and descend lower and lower, until they finally reach an
impermeable stratum which forbids their further progress to a greater
depth.
The granite, gneiss, porphyry, lava, and other unstratified and
crystalline rocks of igneous origin, which cover about a third part of
the habitable globe, are likewise intersected by innumerable fissures
and interstices, which, in a similar manner, collect and transmit rain-
water.
Thus the plutonic or volcanic forces which have gradually moulded the
dry land into its present form have also provided it with the necessary
filters, drains, reservoirs, and conduits, for the constant
replenishment of springs, brooks, and rivers. As every porous layer is
more or less saturated with moisture, the stratified rocks are
frequently traversed at various depths by distinct sheets of water, or
rather, in most cases, by permanently drenched or waterlogged sheets of
chalk or sand. Thus, in a boring undertaken in search of coal at St.
Nicolas d’Aliermont, near Dieppe, no less than seven very abundant
aquiferous layers or beds of stone were met with from about 75 to 1,000
feet below the surface. In an Artesian boring at Paris, five distinct
sheets of water, each of them capable of ascension, were ascertained;
and similar perforations executed in the United States, and other
countries, have in the same manner traversed successive stages of
aqueous deposits.
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