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A new criterion for defining the failure of a fractured rock mass slope based on the strength reduction method

机译:基于强度缩减法定义裂缝岩体斜率故障的新标准

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In this study, a stability analysis approach for fractured rock mass slopes is proposed by combining the strength reduction method ( SRM ) with the undirected graph theory ( UGT ). First, the original shear strength parameters of all the fractures are divided by the same reduction coefficient to generate new shear strength parameters, which are used for numerical simulations of the fractured rock mass slope. Second, the connectivity of the failure fractures is analyzed with a self-developed code, which is developed based on UGT . If no fracture clusters are fully connected from the top of the slope to the toe or free face of the slope, the slope is considered to be stable, and the reduction coefficient is incremented. The above calculation procedures are repeated until there is exactly right a fracture cluster is fully connected (i.e. slope is leaded to critical state). The reduction coefficient that coincides with the critical state is considered as the safety factor of the slope, and the fractured rock mass encompassed by the connected failure fractures is regarded as the unstable part of the slope. Finally, the proposed method is applied to analyze the stability and the potential failure range of a steep slope to verify its validity.
机译:在该研究中,通过将强度还原方法(SRM)与未分子的图形理论(UGT)相结合,提出了一种稳定性分析方法,提出了裂缝岩质量斜面。首先,所有裂缝的原始剪切强度参数除以相同的降低系数,以产生新的剪切强度参数,用于裂缝岩体斜率的数值模拟。其次,用自行式代码分析了故障骨折的连接,这是基于UGT开发的。如果没有从斜面的顶部完全连接到斜坡的脚趾或自由面的骨折簇,则认为斜率是稳定的,并且减少系数递增。重复上述计算过程,直到完全正确地骨折簇完全连接(即斜率被引导到临界状态)。与临界状态重合的减少系数被认为是斜率的安全系数,并且所包围的裂缝骨折被认为是斜坡的不稳定部分被视为不稳定的部分。最后,应用提出的方法来分析陡坡稳定性和潜在故障范围以验证其有效性。

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