supported by the International Projects cooperated with China,America,German and Canada(INDEPTH)(Grant No.9501207);the National Natural Science Foundation of China(Grant No.49732100);the Knowledge Innovation Project of Chinese Academy of Sciences(Grant No.CX000018);the Chinese Sciences Foundation Postdoctoral Level Funded Project(Grant No.9 Chinese Postdoctoral Funded(1998)).
Research on the elasticity and plasticity dynamics of the Earth multi-body system, including the Earth multi-body system stratum-block's equivalent inertia force system and generalized inertia force, the Earth multi-b...
supported by the international projects cooperated with China,America,Germany and Canada(INDEPTH-Ⅲ)(Grant No.9501207);the Key Project of National Natural Science Foundation of China(Grant No.49732100);the Knowledge Innovation Project of Chinese Academy of Sciences(Grant No.CX000018);the Chinese Sciences Foundation Postdoctoral Level Funded Project(Grant No.9 Chinese Postdoctoral Funded(1998)).
This paper summarizes the first movement and mass centre of stratum-block movement inertia in the Earth multi-body system and introduces its application. It also elaborates the moment of inertia and the products of in...
supported by the International Projects cooperated with China,America,German and Canada(INDEPTH)(Grant No.9501207);the National Natural Science Foundation of China(Grant No.49732100);the Knowledge Innovation Project of Chinese Academy of Sciences(Grant No.CX000018);the Chinese Sciences Foundation Postdoctoral Level Funded Project(Grant No.9 Chinese Postdoctoral Funded(1998)).
Research provides a theoretical basis for an Earth system multi-body mechanics model and its dynamics, including the Earth system multi-body restriction function and its power, Earth system multi-body restriction unde...
This work was supported by the National Natural Science Foundation of China (grants Nos. 49802020, 49732100 and 40172074);the Specific Project for Authors of the Best Dissertations of Chinese Universities and Colleges (200022)
Structural analyses show that the Ailaoshan-Red River shear zone (ASRRSZ) in Ailao Mountain is composed of three different deformational domains. These domains may represent three episodes of left-lateral slip exper...