Depth distribution of earthquakes in the Baikal rift system and its implications for the rheology of the lithosphere
Jacques Déverchère,Carole Petit,Nadejda Gileva,Natalia Radziminovitch,V. I. Melnikova,Vladimir San'kov +5 more
TL;DR: In this paper, the authors examined the correspondence between the predicted brittle-plastic transition within the crust and the maximum depth of earthquakes in the case of the Baikal rift, Siberia.
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Abstract: SUMMARY The correspondence between the predicted brittle‐plastic transition within the crust and the maximum depth of earthquakes is examined in the case of the Baikal rift, Siberia. Although little accurate information on depths is available through large- and moderatesize earthquakes, there are frequent indications of foci at 20 km depth and more. We have relocated 632 events recorded at nearby stations that occurred between 1971 and 1997, with depth and epicentral uncertainties less than 5 km, over the eastern and southern parts of the Baikal rift. We have compared these results with other depth distributions obtained in previous studies from background seismicity in the NE rift (1365 events in the Kalar-Chara zone and 704 events in the Muya region). The relative abundance of earthquakes is generally low at depths between 0 and 10 km (7‐15 per cent) and high between 15 and 25 km (y50 per cent). Earthquake activity is still significant between 25 and 30 km (9‐15 per cent) and persists between 30 and 40 km (7‐13 per cent). Very few earthquakes are below the Moho. We use empirical constitutive laws to obtain the yieldstress limits of several layers made of dominant lithologies and to examine whether the observed distribution of earthquakes at depth (519 events controlled by a close station and located within the extensional domain of the Baikal rift system) can match the predicted crustal strength proportion with depth and the deeper brittle‐ductile transition in the crust. A good fit is obtained by using a quartz rheology at 0‐10 km depth and a diabase rheology at 10‐45 km depth with a moderate temperature field which corresponds to a y100 Myr thermal lithosphere. No dioritic composition of the crust is found necessary. In any case, earthquakes occur at deep crustal levels, where the crust is supposed to be ductile, in a way very similar to what is found in the East African Rift System. From these results we conclude that the seismogenic thickness is y35‐40 km in the Baikal rift system and that the depth distribution of earthquakes is at first order proportional to the strength profile found in a rheologically layered crust dominated by a mafic composition in the y10‐45 km depth range. An upper mantle core with high strength, however, generally prevents it from reaching stress failure at greater depth.
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References
New Empirical Relationships among Magnitude, Rupture Length, Rupture Width, Rupture Area, and Surface Displacement
TL;DR: In this article, a series of empirical relationships among moment magnitude (M ), surface rupture length, subsurface rupture length and downdip rupture width, and average surface displacement per event are developed.
7.5K
•Book
The Mechanics of Earthquakes and Faulting
Christopher H. Scholz
- 25 Jan 1991
TL;DR: The connection between faults and the seismicity generated is governed by the rate and state dependent friction laws -producing distinctive seismic styles of faulting and a gamut of earthquake phenomena including aftershocks, afterslip, earthquake triggering, and slow slip events.
4.1K
Friction of Rocks
TL;DR: This paper showed that at low normal stress the shear stress required to slide one rock over another varies widely between experiments and at high normal stress that effect is diminished and the friction is nearly independent of rock type.
4K
Fault rocks and fault mechanisms
TL;DR: In this paper, physical factors likely to affect the genesis of the various fault rocks are examined in relation to the energy budget of fault zones, the main velocity modes of faulting and the type of fault, whether thrust, wrench, or normal.
2.1K
Limits on lithospheric stress imposed by laboratory experiments
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TL;DR: Byerlee's law, converted to maximum or minimum stress, is a good upper or lower bound to observed in situ stresses to 5 km, for pore pressure hydrostatic or subhydrostatic as discussed by the authors.
1.8K