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- W2372650801 abstract "It has been known that except the strain located along the plate boundary,plate interaction can propagate significant strain into the internal of the continent far away from the plate margin.So far,the mechanism related to intraplate deformation in the sense of plate tectonics is not fully understood.Combined with reasonable rheological structure of the continental crust and current crustal movement derived from GPS observations,here we developed a three-dimensional viscoelastic finite element model to explore possible mechanism of the intraplate deformation around the Tiebtan plateau and the Tienshan regions associating with the India-Asia collisional process.The crustal rheology is simplified as Maxwellian media.In the model,the southwest boundary is specified with GPS velocity field relative to the stable Eurasian plate,on the other sides of the model,the spring boundary conditions are used to mimic far-field effect of the modeled region.On the gravitational direction,gravity loading is considered,with the model base as a hydrostatic pressure boundary.By testing a numerous models with variable parameters,our results show that if the rheological structure from the Tibetan plateau to the Tienshan region is laterally homogeneous,the modeled uplifting would represent in a same pattern.However,if the lateral variation of crustal rheology is considered,modeling results predict that on the north and south sides of the Tarim block both the Tibetan plateau and the Tienshan can obtain obvious strain,in agreement with the tectonic pattern of the regions as many geologic observations indicated.This suggests that the strong crustal deformation of the Tienshan since the late Cenozoic time may be relevant to the lateral inhomogeneity of the rheological structure.We believe that such a result could have valuable implications on understanding mechanism of the intracontinental deformation related to the far-field plate interactions." @default.
- W2372650801 created "2016-06-24" @default.
- W2372650801 creator A5048447214 @default.
- W2372650801 date "2013-01-01" @default.
- W2372650801 modified "2023-09-28" @default.
- W2372650801 title "Three-dimensional mechanical modeling of intracontinental deformation around the tibetan plateau and tienshan regions" @default.
- W2372650801 hasPublicationYear "2013" @default.
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