_Earth-Fissures._--Among the superficial effects of the earthquake,
none take a more important place than the fissures formed in alluvial
plains. Not only were they remarkably abundant, more so than in any
other known earthquake, but they occurred over an unusually wide area.
Wherever the necessary conditions prevailed, they were found to be
numerous over a district bounded approximately by the isoseismal 1
(Fig. 68), and measuring about 400 miles from east to west, and about
300 miles from north to south; and they were present, though in
smaller numbers, over an area nearly 600 miles long in an
east-north-east and west-south-west direction. They were naturally
more frequent near river-channels and reservoirs, on account of the
absence of lateral support, and as a rule were parallel to the edge of
the bank, a few hundred yards in length, and in width varying from
some inches to four or five feet.
Fissures in such positions are formed with every violent earthquake,
and even with some of those more moderate shocks that visit the
British Islands (see p. 247). But an interesting point established by
the Indian earthquake is that they also occurred at a distance from
any water-channel or excavation, often running parallel to, and along
either side of, a road or embankment. In other situations, they showed
a distinct tendency to range themselves parallel to one another; and,
in these cases, it is possible that their formation was connected with
the passage of the visible surface-waves. In an account already quoted
(p. 247), it is stated that these waves came from opposite directions
and that, as they separated after meeting, the ground opened slightly.
Among the Khasi and Garo hills (see Fig. 75), wherever the alluvium of
the plains runs up to the foot of the hills, another form of fissure,
represented in Fig. 73, was constantly noticed. Close to the
junction, there was a sudden drop, as at _a_, of from one to five
feet, the vertical face having the appearance of a fault, but
distinguished from one by following the windings of the hills. Then
came a depressed band _b_, from ten to twenty feet wide, and outside
this a low rounded ridge _c_ raised above its former level, and
merging beyond at _d_ into the undisturbed plain. When Mr. Oldham
visited the district in March 1898, the natives had flooded the
rice-fields, and the features described were clearly depicted by the
gathering of the water in the depression and the isolation of the
ridge.
[Illustration: FIG. 73.--Displacement of alluvium at foot of a
hill. (_Oldham._)]
The explanation of these peculiarities is evidently that given by Mr.
Oldham. During the passage of repeated waves of compression, the
thrust of the hill and plain against one another caused the heaping up
of the alluvium in the ridge _c_; while the return movements resulted
in the tearing of the alluvium away from the hillside, leaving the
scarp _a_ and the depression _b._
Public-domain text, read in full here on John Shaqi.
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