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Kinematic model of active deformation in central Asia

Geophysical Research Letters · 1993 · Vol. 20(10) · pp. 895–898
Jean‐Philippe AvouacPaul Tapponnier

Abstract

The velocity field of present‐day deformation in Central Asia is modelled using a set of four rotating blocks (Siberia, Tarim, Tibet, India) on a spherical earth. A best‐fit is inverted on the basis of estimated shortening‐rates across the main thrust zones (Himalayas, Tien Shan) and measured slip‐rates along the principal strike‐slip faults (Altyn Tagh and Karakorum) separating those blocks. The fit to the data implies that nearly all the present convergence between India and Asia can be accounted for by slip‐partitioning on these four zones, with as much as 50% absorbed by northeastwards extrusion of Tibet. This suggests that localised deformation governs the present mechanical behaviour of the Central Asian lithosphere.

earthquake and tectonic studiesHigh-pressure geophysics and materialsGeological and Geochemical AnalysisGeologyLithosphereSlip (aerodynamics)Central asiaSeismologyKinematicsDeformation (meteorology)ThrustGeodesyTectonics

Funding

  • Department of Biotechnology, Ministry of Science and Technology, India
  • Centre National de la Recherche Scientifique
Citations
954
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13.12
field-weighted impact
References
22
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99%
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Citations per year
References
Present‐day plate motions
Journal of Geophysical Research Atmospheres · 1978 · 2,255 citations
Current plate motions
Geophysical Journal International · 1990 · 3,724 citations
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