_Explanation of the above phenomena._—That the water in springs and
wells should be caused to rise at the time of an earthquake, admits of
explanation on the supposition of compressions taking place similar
to those which cause the rise of water in fissures. That the water in
wells and springs should be rendered turbid, is partly explained on the
supposition of more or less dislocation taking place in the earthy or
rocky cavities in which they are contained or through which they flow.
At the time of a large earthquake it is extremely probable that there
is a general disturbance in the lines of circulation of subterranean
waters and gases throughout the shaken area. By these disturbances, new
waters may be brought to the surface, two or more lines of circulation
may be united, and the flow of a spring or supply of a well be
augmented. Fissures, through which waters reached the surface, may be
closed, wells may become dry, or springs may cease to flow, hot springs
may have their temperature lowered by the additions of cold water
from another source, and, in a similar manner, waters may be altered
in their mineralisation. An important point to be remembered in this
consideration is the mutual dependence of various underground water
supplies, and the area over which any given supply may circulate. A
well in the higher part of Lincoln Heath is said to be governed by the
river Trent, which is ten miles distant; when the river rises the well
rises in proportion, and when the river falls the water in the well
falls.[66]
The change which is usually observed in hot springs is, that before or
with earthquakes they increase in temperature, but afterwards sink back
to their normal state. This increase in temperature may possibly be due
to communication being opened with new or deeper centres of volcanic
activity, or a temporarily increased rate of flow.
That the water issuing from newly formed fissures or springs should
be hot, might be explained on the supposition of its arising from a
considerable depth, or from some volcanic centre. It might also be
attributed to the heat developed by friction at the opening of the
fissures. These changes which earthquakes produce upon the underground
circulation of waters are phenomena deserving especial attention.
Although we know much about the circulation of surface water, it is but
little that we yet know about the movement of the streams hidden from
view, from which these surface waters have their sources. Earthquakes
may be regarded as gigantic experiments on the circulatory system of
the earth, which, if properly interpreted, may yield information of
scientific and utilitarian value.
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