The Economic Aspect of GeologyLeith, C. K. (Charles Kenneth)
Science
The Economic Aspect of Geology
Leith, C. K. (Charles Kenneth)
Geology, Economic
Immediately at the surface, the openings of rocks may not be filled with
water; but below the surface, at distances varying with climatic and
topographic conditions, the water saturates the openings of the rocks
and forms what is sometimes called the _zone of saturation_ or the _sea
of underground water_. The top surface of this zone is called the _water
table_, or the _ground-water level_. The space between the water table
and the earth's surface is sometimes referred to as the _vadose zone_ or
the _zone of weathering_, since it is the belt in which weathering
processes are most active. The zone of weathering is not necessarily
dry. Water from the surface enters and sinks through it and water also
rises through it from below; it may contain suspended pockets of water
surrounded by dry rocks; it is not continuously and fully saturated.
The water table or ground-water level may be near or at the surface in
low and humid areas, and it may be two thousand feet or more below the
surface in arid regions of high topographic relief. Because of the
influence of capillarity, the water table is not a horizontal surface.
It shows irregularities more or less following the surface contours,
though not nearly so sharply accentuated.
The lower limit of the ground-water is more irregular than the upper
surface and is less definitely known. In general, openings in rocks tend
to diminish with depth, due to cementation and to closing of cavities by
pressures which are too great for the rock to withstand. But rocks
differ so widely in their original character, and in their response to
physical and chemical environment, that it is not unusual to find dense
and impervious rocks above, and open and porous rocks below. The lower
limit of the zone of abundant underground water varies accordingly. A
well may encounter nearly dry rock at a comparatively shallow depth, or
it may reach a porous water-bearing stratum at considerable depth. At
the greater depths pockets of water are sometimes found which have a
composition different from that of the surface water, and which
evidently are isolated from the surface water by zones of non-pervious
rock.
Attempts have been made to calculate the total volume of underground
water by measuring the openings of rocks and making assumptions as to
the depth to which such openings may extend. In this manner it has been
estimated that, if all the ground-water were assembled in a single body,
it would make a shell between eighty and two hundred feet thick
(depending on the assumptions) over all the continental areas.
MOVEMENT OF UNDERGROUND WATER
Availability of water supplies is determined by the movement or flow of
water as well as by its distribution and amount. The natural flow of
water underground is caused by gravity in the larger openings, but in
the smaller openings adhesion and capillarity are also important forces.
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