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Study on Dynamic Numerical Simulation of Mountain System in Tibet Plateau

机译:青藏高原山地系统动态数值模拟研究

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Tibet Plateau in mountain system is becoming one of the focuses of global technique research, because its crust is marvelous thick, which is twice of the normal thickness of mountain system in lithosphere, and its rapid raise from the Quaternary. By using a finite element analysis software ABAQUS, the numeric analysis has been carried out and presented in this paper for the lithosphere stress field. It is the first time to use the displacement loading in the simulation of Tibet Plateau. During the analysis, the deformed elements are used to simulate the structure band, and friction mechanism is used to model the fracture band. The boundary conditions are given according to the boundary displacements around the Plateau. The stress and displacement distributions are obtained for the geological evolution of the plateau, which are consistent with P axial orientations of the seismic origin mechanism and the measures principle stress orientations. The analysis is also given for the dynamic lithosphere evolution of the Mountain System in the Tibet Plateau.
机译:高山系统中的青藏高原正在成为全球技术研究的重点之一,因为其地壳奇妙的厚度是岩石圈正常山系厚度的两倍,并且从第四纪开始迅速上升。通过使用有限元分析软件ABAQUS,对岩石圈应力场进行了数值分析,并在本文中进行了介绍。这是首次在青藏高原模拟中使用位移载荷。在分析过程中,变形元素用于模拟结构带,摩擦机制用于模拟断裂带。边界条件是根据高原周围的边界位移给出的。获得了高原地质演化过程中的应力和位移分布,其与地震成因机制的P轴方向和测得的主应力方向一致。还对青藏高原山地系统的岩石圈动态演化进行了分析。

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