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Stability analysis of rock and effect evaluation of supporting scheme in Tianchi underground plant

机译:天池地下植物支护方案岩石稳定性分析

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With the implementation of Western Development, West-to-East Electricity Transmission Project and South-to-North Water Diversion Project, a large number of hydro-power stations have been built in the west middleland regions of China. Because of the complexity of terrain, geological and physical-mechanical conditions, the stability of large underground structures becomes one of the most important problems during the engineering design, construction and operation. This paper will take Tianchi hydro-power station as an example, according to the measured stresses at several points, the in-situ stress field is feedback analyzed by using the combination of the genetic algorithm and 3D finite element method. Then, the rheological model of bolted joint rock and nonlinear finite element method are adopted to calculate the displacement field, stress field and D-P point safety factor of the underground structure. The stability of the underground structure is discussed, the excavating and supporting scheme are also presented, and the supporting effect is evaluated. The achievements in this paper can not only be taken as the reference to the design, but also provide some design experiences for other underground structures.
机译:随着西方发展的西部发展,西部电力传输项目和南北分流项目,中国西中尔兰地区建于中国的大量水电站。由于地形,地质和物理机械条件的复杂性,大地下结构的稳定性成为工程设计,施工和操作期间最重要的问题之一。本文将采用天池水电站作为示例,根据几点的测量应力,原位应力场通过使用遗传算法和3D有限元方法的组合来分析反馈。然后,采用螺栓连接岩和非线性有限元方法的流变模型计算地下结构的位移场,应力场和D-P点安全系数。讨论了地下结构的稳定性,还呈现了挖掘和支撑方案,并评估了支撑效果。本文的成就不仅可以作为对设计的参考,而且还可以为其他地下结构提供一些设计体验。

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