Here we see that the Charleston earthquake was perceptible over a
greater area than the Indian earthquake, while the Neapolitan
earthquake was inferior to that of Hereford in this respect. The
explanation of course is that the boundaries of the disturbed areas
are isoseismal lines corresponding to different degrees of intensity,
the inhabitants of Great Britain and the United States being evidently
more sensitive to weak tremors, or more observant, than those of
Italy, Spain, or Central Asia. The only disturbed areas that are
bounded by isoseismals of the same intensity are the two last. Very
roughly, then, we may say that the intensity of the Hereford
earthquake was three times as great as that of the Inverness
earthquake.
POSITION OF THE EPICENTRE.
One of the first objects in the investigation of an earthquake is to
determine the position and form of the epicentre. In a few rare cases,
as in the Japanese and Indian earthquakes, when the fault-scarp is
left protruding at the surface, only careful mapping is required to
ascertain both data. But, in the great majority of earthquakes, the
fault-slip dies out before reaching the surface and the position of
the epicentre is then inferred by methods depending chiefly on the
time of occurrence or on the direction or intensity of the shock.
At first sight, methods that involve the time of occurrence at
different places seem to be of considerable promise. No scientific
instruments are so widely diffused as clocks and watches; but, on the
other hand, few are so carelessly adjusted. It is the exception,
rather than the rule, to find a time-record accurate to the nearest
minute; and, as small errors in the time may be of consequence,
methods depending on this element of the earthquake are seldom
employed. If, however, the number of observations is large for the
size of the disturbed area, the construction of coseismal lines may
define approximately the position of the epicentre. In the Hereford
earthquake of 1896, the centre of the innermost coseismal line (Fig.
62) is close to the region lying between the two epicentres.
The method of locating the epicentre by means of the intersection of
two or more lines of direction of the shock was first suggested by
Michell in 1760,[79] and has been employed by Mallet in investigating
the Neapolitan earthquake, by Professors Taramelli and Mercalli in
their studies of the Andalusian and Riviera earthquakes, as well as by
other seismologists. The diversity of apparent directions at one and
the same place caused its temporary neglect, until Professor Omori
showed in 1894 that the mean of a large number of measurements gives a
trustworthy result (p. 19). His interesting observations should
reinstate the method to its former place among the more valuable
instruments at the disposal of the seismologist.
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