HR: 0800h
AN: T51D-0769 [Abstracts]
TI: Seismotectonic Models of the Three Recent Devastating SCR Earthquakes in India
AU: * Mooney, W D
EM: mooney@usgs.gov
AF: US Geological Survey, 345 Middlefield Rd.
MS 977, Menlo Park, CA 94025, United States
AU: Kayal, J
EM: jr_kayal@hotmail.com
AF: Geological Survey of India, 27 J. Nehru Road, Kolkata, 70016, India
AU: Kayal, J
EM: jr_kayal@hotmail.com
AF: Indian School, of Mines, Dhanbar, 826004, India
AB:
During the last decade, three devastating earthquakes, the Killari 1993 (Mb 6.3), Jabalpur 1997 (Mb 6.0) and the
Bhuj 2001 (Mw 7.7) occurred in the Stable Continental Region (SCR), Peninsular India. First, the September 30,
1993 Killari earthquake (Mb 6.3) occurred in the Deccan province of central India, in the Latur district of
Maharashtra state. The local geology in the area is obscured by the late Cretaceous-Eocene basalt flows,
referred to as the Deccan traps. This makes it difficult to recognize the geological surface faults that could be
associated with the Killari earthquake. The epicentre was reported at 18.090N and 76.620E, and the focal depth
at 7 +/- 1 km was precisely estimated by waveform inversion (Chen and Kao, 1995). The maximum intensity
reached to VIII and the earthquake caused a loss of about 10,000 lives and severe damage to property.
The May 22, 1997 Jabalpur earthquake (Mb 6.0), epicentre at 23.080N and 80.060E, is a well studied earthquake
in the Son-Narmada-Tapti (SONATA) seismic zone. A notable aspects of this earthquake is that it was the first
significant event in India to be recorded by 10 broadband seismic stations which were established in 1996 by the
India Meteorological Department (IMD). The focal depth was well estimated using the "converted phases" of the
broadband seismograms. The focal depth was given in the lower crust at a depth of 35 +/- 1 km, similar to the
moderate earthquakes reported from the Amazona ancient rift system in SCR of South America. Maximum MSK
intensity of the Jabalpur earthquake reached to VIII in the MSK scale and this earthquake killed about 50 people in
the Jabalpur area.
Finally, the Bhuj earthquake (MW 7.7) of January 26, 2001 in the Gujarat state, northwestern India, was felt across
the whole country, and killed about 20,000 people. The maximum intensity level reached X. The epicenter of the
earthquake is reported at 23.400N and 70.280E, and the well estimated focal depth at 25 km. A total of about
3000 aftershocks (M> 1.0) were recorded until mid April, 2001. About 500 aftershocks (M>2.0) are well
located; the epicenter map shows an aftershock cluster area, about 60 km x 30 km, between 70.0-70.60E and
23.3-23.60N; almost all the aftershocks occurred within the high intensity (IX) zone. The source area of the main
shock and most of the aftershocks are at a depth range of 20-25 km. The fault-plane solutions suggest that the
main shock originated at the base of the paleo-rift zone by a south dipping, hidden reverse fault; the rupture
propagated both NE and NW. The aftershocks occurred by left-lateral strike-slip motion along the NE trending
fault, compatible with the main shock solution, and by pure reverse to right-lateral, strike-slip motion along the
NW trending conjugate fault.
Understanding these earthquake sequences may shed new light in on the tectonics and active faults in the
source regions.
DE: 7223 Earthquake interaction, forecasting, and prediction (1217, 1242)
DE: 7230 Seismicity and tectonics (1207, 1217, 1240, 1242)
DE: 8110 Continental tectonics: general (0905)
DE: 8120 Dynamics of lithosphere and mantle: general (1213)
SC: Tectonophysics [T]
MN: 2007 Fall Meeting