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Jointed Surrounding Rock Mass Stability Analysis on an Underground Cavern in a Hydropower Station Based on the Extended Key Block Theory

机译:基于扩展键块理论的水电站地下洞室节理围岩稳定性分析

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The jointed surrounding rock mass stability is of utmost importance to integral stability during the construction and long-term safety operation of the underground caverns in hydropower stations. The key blocks play a significant role in the integral stability of the jointed surrounding rock mass, therefore it is critical to determine the location, size, and failure mode of random key blocks. This paper proposes an improved method combining the traditional key block theory (KBT) and the force transfer algorithm to accurately calculate the safety factors of probabilistic key blocks in the surrounding rock mass. The force transfer algorithm can consider the interactions between the internal blocks. After the probabilistic characteristics of the joint fissures are obtained, the stereographic projection method is employed to determine the locations of dangerous joints. Then the vector analysis method is used to search the random blocks, determine the sliding directions of random blocks, and calculate the block sizes and safety factors near the free surface of the underground cavern, which can be used to comprehensively evaluate the surrounding rock mass stability. The above numerical results have provided powerful guidance for developing a reinforcement system for the surrounding rock mass.
机译:节理围岩的稳定性对于水电站地下洞室的建设和长期安全运行过程中的整体稳定性至关重要。关键块在节理的围岩整体稳定性中起着重要作用,因此确定随机关键块的位置,大小和破坏模式至关重要。本文提出了一种改进的方法,结合了传统的关键块理论(KBT)和力传递算法,可以准确计算围岩中概率性关键块的安全系数。力传递算法可以考虑内部模块之间的相互作用。在获得关节裂缝的概率特征之后,采用立体投影法确定危险关节的位置。然后采用矢量分析方法搜索随机块体,确定随机块体的滑动方向,计算地下溶洞自由面附近的块体尺寸和安全系数,可用于综合评价围岩稳定性。 。以上数值结果为开发围岩加固系统提供了有力的指导。

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