=The Charleston earthquake.= On the evening of August 31, 1886, the
city of Charleston, S.C., was shaken by one of the greatest
earthquakes which has occurred in the United States. A slight tremor
which rattled the windows was followed a few seconds later by a roar,
as of subterranean thunder, as the main shock passed beneath the city.
Houses swayed to and fro, and their heaving floors overturned
furniture and threw persons off their feet as, dizzy and nauseated,
they rushed to the doors for safety. In sixty seconds a number of
houses were completely wrecked, fourteen thousand chimneys were
toppled over, and in all the city scarcely a building was left without
serious injury. In the vicinity of Charleston railways were twisted
and trains derailed. Fissures opened in the loose superficial
deposits, and in places spouted water mingled with sand from shallow
underlying aquifers.
The point of origin, or _focus_, of the earthquake was inferred from
subsequent investigations to be a rent in the rocks about twelve miles
beneath the surface. From the center of greatest disturbance, which
lay above the focus, a few miles northwest of the city, the surface
shock traveled outward in every direction, with decreasing effects, at
the rate of nearly two hundred miles per minute. It was felt from
Boston to Cuba, and from eastern Iowa to the Bermudas, over a circular
area whose diameter was a thousand miles.
An earthquake is transmitted from the focus through the elastic rocks
of the crust, as a wave, or series of waves, of compression and
rarefaction, much as a sound wave is transmitted through the elastic
medium of the air. Each earth particle vibrates with exceeding
swiftness, but over a very short path. The swing of a particle in firm
rock seldom exceeds one tenth of an inch in ordinary earthquakes, and
when it reaches one half an inch and an inch, the movement becomes
dangerous and destructive.
[Illustration: Fig. 210. Block of the Earth's Crust shaken by
an Earthquake
_x_, focus; _a_, _b_, _c_, _d_, successive spheroidal waves in
the crust; _a´_, _b´_, _c´_, _d´_, successive surface waves
produced by the outcropping of _a_, _b_, _c_, and _d_]
The velocity of earthquake waves, like that of all elastic waves,
varies with the temperature and elasticity of the medium. In the deep,
hot, elastic rocks they speed faster than in the cold and broken rocks
near the surface. The deeper the point of origin and the more violent
the initial shock, the faster and farther do the vibrations run.
Great earthquakes, caused by some sudden displacement or some violent
rending of the rocks, shake the entire planet. Their waves run through
the body of the earth at the rate of about three hundred and fifty
miles a minute, and more slowly round its circumference, registering
their arrival at opposite sides of the globe on the exceedingly
delicate instruments of modern earthquake observatories.
Public-domain text, read in full here on John Shaqi.
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