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Research on Static and Dynamic Reinforcement Effect of Concrete Replacement Holes for 2# Potential Slide Block at Left Bank of Baihetan Hydropower Station

机译:Baihetan水电站左岸2#电位滑块混凝土替换孔的静态和动态增强效果研究

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摘要

By the static strength reduction method, time history analysis method, dynamic strength reduction method based on numerical calculation, the static and dynamic stability of 2# potential sliding block in natural state and the reinforcement effect are researched, which is located at the left bank of Baihetan Hydropower Station in western China. As the static and dynamic stability of the block in natural state can not meet the requirement of design specification, two concrete replacement holes are arranged in the bottom sliding surface for reinforcement. Two simulation methods for concrete replacement holes are used for the research of reinforcement effect, i.e. equivalent area simulation and detail simulation. Mohr-Coulomb failure criterion is taken in the elastic-plastic calculation, and the static and dynamic safety factors after reinforcement are calculated. The results show that the static stability safety factor obtained by equivalent simulation is less than that by detail simulation, and the dynamic stability safety factor is slightly greater than that by detail simulation, and the safety factors by the two simulation method are overall similar with each other. According to the research results, the static and dynamic stability of 2# block after reinforcement can satisfy the requirement of the design specification, and it can be considered that the reinforcement plan is reasonable.
机译:通过静力减小方法,时间历史分析方法,基于数值计算的动态强度减小方法,研究了2#电位滑块的静态和动态稳定性,以及加强效果,位于左岸中国西部的白初水电站。随着天然状态块的静态和动态稳定性不能满足设计规范的要求,两个混凝土更换孔布置在底部滑动表面中以进行加强。混凝土替代孔的两种仿真方法用于加固效果的研究,即等效区域仿真和细节仿真。 Mohr-Coulomb失败标准在弹性塑料计算中拍摄,并计算加固后的静态和动态安全因子。结果表明,通过等效模拟获得的静态稳定性安全系数小于细节仿真,并且动态稳定性安全系数略大于细节仿真,并且两个仿真方法的安全因子与每个模拟相似其他。根据研究结果,加固后2#块的静态和动态稳定性可以满足设计规范的要求,可以认为加强计划是合理的。

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