Draining for Profit, and Draining for HealthWaring, George E. (George Edwin)
Science
Draining for Profit, and Draining for Health
Waring, George E. (George Edwin)
Drain-tiles; Drainage
In a very loose, gravelly, or sandy soil, which has a perfect outlet for
water below, all but the heaviest falls of rain will sink at once, while
on a heavy clay, no matter how well it is drained, the process of
filtration will be much more slow, and if the land be steeply inclined,
some of the water of ordinarily heavy rains must flow off over the
surface, unless, by horizontal plowing, or catch drains on the surface,
its flow be retarded until it has time to enter the soil.
The power of drained soils to hold water, by absorption, is very great. A
cubic foot of very dry soil, of favorable character, has been estimated to
absorb within its particles,—holding no free water, or water of
drainage,—about one-half its bulk of water; if this is true, the amount
required to _moisten_ a dry soil, four feet deep, giving no excess to be
drained away, would amount to a rain fall of from 20 to 30 inches in
depth. If we consider, in addition to this, the amount of water drained
away, we shall see that the soil has sufficient capacity for the reception
of all the rain water that falls upon it.
In connection with the question of absorption and filtration, it is
interesting to investigate the movements of water in the ground. The
natural tendency of water, in the soil as well as out of it, is to descend
perpendicularly toward the center of the earth. If it meet a flat layer of
gravel lying upon clay, and having a free outlet, it will follow the
course of the gravel,—laterally,—and find the outlet; if it meet water
which is dammed up in the soil, and which has an outlet at a certain
elevation, as at the floor of a drain, it will raise the general level of
the water, and force it out through the drain; if it meet water which has
no outlet, it will raise its level until the soil is filled, or until it
accumulates sufficient pressure, (head,) to force its way through the
adjoining lands, or until it finds an outlet at the surface.
The first two cases named represent the condition which it is desirable to
obtain, by either natural or artificial drainage; the third case is the
only one which makes drainage necessary. It is a fixed rule that water,
descending in the soil, will find the _lowest_ outlet to which there
exists a channel through which it can flow, and that if, after heavy
rains, it rise too near the surface of the ground, the proper remedy is to
tap it at a lower level, and thus remove the water table to the proper
distance from the surface. This subject will be more fully treated in a
future chapter, in considering the question of the depth, and the
intervals, at which drains should be placed.
Public-domain text, read in full here on John Shaqi.
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