4.1 Article

Influence of fluids on deep crustal Jabalpur earthquake of 21, May 1997: Geophysical evidences

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JOURNAL OF SEISMOLOGY
卷 10, 期 3, 页码 301-314

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SPRINGER
DOI: 10.1007/s10950-006-9018-y

关键词

pore-pressure; diffusion; shear stress; strain rate; dehydration of serpentinite

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We present the geophysical evidences on the role of fluids for generation of the lower crustal Jabalpur earthquake ( 21 May 1997, mb 6.0, Mw 5.8), in the mid-continental fracture zone of the Indian Peninsular Shield. With a focal depth of 35 km, it indicates a high angled (< 62 degrees enclosed with maximum principal stress direction) reverse fault with small component of left-lateral strike slip in the lower crust. The Son-Narmada-Tapti (SONATA) magalineament, during the past two centuries, has experienced about 25 moderate to strong earthquakes; two of which namely the Son Valley (1927, M 6.5) and Jabalpur ( 21 May 1997) were disastrous. Historical earthquakes and recent earthquake swarms indicate a moderate to high seismicity in SONATA belt that is due to high strain accumulation, flexuring of the crust and neotectonic movements of the faults in the rift zones. By analyzing geophysical parameters such as Zero-Free air-based (ZFb) gravity anomalies (similar to - 10 to - 30 mGals), heat flow values (45 - 47 mW m(-2)), magneto-telluric values (1-Ohm m), strain rate (1.5 x 10(-8)) and failure stress conditions, we identify plausible causative factors for the occurrence of lower crustal earthquake in this region Fluids, due to dehydration of serpentinite in the lower crust, are suggested to be present in the earthquake source zone. The estimated pore-fluid factor for the Jabalpur earthquake (lambda(v)) is 0.95. The diffusion of pore-pressure relaxation, represented as pressure perturbation generated by coseismic stress change was seen in the form of swarm activity two years prior to the Jabalpur earthquake. We suggest the existence of a deep pre-fractured zone with low shear stress (tau = 15 - 18 MPa) that indicates the presence of fluid filled fractured mafic material in the felsic crust, in critical state of unstable failure condition, and also fluid driven migration of swarm activity before the Jabalpur earthquake.

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