首页> 外文会议>ASME(American Society of Mechanical Engineers) Pressure Vessels and Piping Conference vol.8: Seismic Engineering; 20050717-21; Denver,CO(US) >Response of soil and a submerged tunnel during a thrust fault offset based on model experiment and numerical analysis
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Response of soil and a submerged tunnel during a thrust fault offset based on model experiment and numerical analysis

机译:基于模型试验和数值分析的推力断层偏移过程中土体和淹没隧道的响应

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Observed from the earthquake disasters occurred over the decades in Taiwan, the deformation of near surface soil was the major cause lead to damages of underground structures or pipe lines; for instance, the damage of diversion tunnel of Shih-Kang Dam in Chichi earthquake is a typical case. To study the process of fault propagation as well as the associated soil and structure deformation during a fault offset event, model experiments of simulating thrust fault offset were set up, in which non-cohesive sands was adopted simulating near surface soil. The results, obtained from experiment studies and numerical analyses based on finite element method were then compared to further explore the behavior of soil, structure during faulting process. The soil deformation obtained from numerical analysis complies with the outcome from model experiments. In the near future, when conducting a risk evaluation for earthquake-induced damage on underground structure, a numerical stimulation can provides helpful quantity analysis and can serve as a handy tool for the earthquake resistance design.
机译:从几十年来台湾发生的地震灾害中可以看出,近地表土壤的变形是导致地下结构或管线损坏的主要原因。例如,在Chichi地震中,Shih-Kang大坝的引水隧洞破坏就是一个典型案例。为了研究断层偏移事件中断层传播的过程以及相关的土体和结构变形,建立了模拟逆冲断层偏移的模型实验,其中采用非粘性砂模拟近地表土壤。然后比较了从试验研究和基于有限元方法的数值分析获得的结果,以进一步探讨断层过程中土壤,结构的行为。通过数值分析获得的土壤变形符合模型实验的结果。在不久的将来,当进行地震对地下结构造成的破坏的风险评估时,数值刺激可以提供有用的数量分析,并且可以用作抗震设计的便捷工具。

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