期刊文献+

Study on Dynamic Numerical Simulation of Mountain System in Tibet Plateau

Study on Dynamic Numerical Simulation of Mountain System in Tibet Plateau
下载PDF
导出
摘要 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.
作者 BISiwen
出处 《Journal of Mountain Science》 SCIE CSCD 2004年第3期211-222,共12页 山地科学学报(英文)
关键词 Tibet Plateau mountain system numerical simulation STRESS DISPLACEMENT 西藏板块 山脉运动 数值仿真 位移 动力地质学
  • 相关文献

参考文献16

  • 1[1]Bi Siwen. 1997. Global system science and sustainable development (Ⅲ)-Surface structure system in unified structure theory[J]. System Engineering Theory and Practice 17(6):83~92.
  • 2[2]Bi Siwen, He Guoqi, Li Jiliang. 1997.Global system science and sustainable development[Ⅳ]-Ground structure feature and geological process of Tibet Plateau in unified structure theory. System Engineering Theory and Practice 17(9):83~92.
  • 3[3]Bi Siwen. 2001. Study on Tibet Plateau mountain system dynamics model [J]. Mountain Journal 19(3):1~8.
  • 4[4]Cui Zuozhou. 1987. The relationship between crust structure architecture and earthquake in Tibet Plateau [J]. China Academy of Geology Sciences Journal 21:215~226.
  • 5[5]Kai Rongju, Zhang Sichang, Yan Fengtong, et al. 1997. Inquirement into the feature of modern structure stress field and modern structure action in south-western China [J]. Global Physics Journal 20(2):96~98.
  • 6[6]Li Fangquan, Liu Guangxun. 1986. Present state and the relative relative issues in China [J]. Earthquake Journal 8(2):156~171.
  • 7[7]Teng Jiwen. 1996. Study on physics-mechanics of Tibet Plateau's ascension as a whole and the crust's becoming short and thick (first) [J]. University Geology Journal (2):121~133.
  • 8[8]Teng Jiwen. 1996. Study on physics-mechanics of Tibet Plateau's ascension as a whole and the crust's becoming short and thick (second) [J]. University Geology Journal (2):121~133.
  • 9[9]Xie Furren, Zhang Shimin, Dou Suqin, et al. 1999. The evolution feature of Quaternary structure stress field in northern and eastern boundary of Tibet Plateau [J]. Earthquake Journal 21(5): 502~510.
  • 10[10]Xie Furen, Liu Guangxun. 1989. Aualysis on new structure stress field in middle Aerjin fracture zone, China Earthquake 5(3): 26~36.

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部