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Stability Analysis of Dangerous Rocks on the Slope of a Hydropower Station

机译:水电站坡危险岩石的稳定性分析

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Dangerous rocks are among the most significant factors in analyzing the stability of high slopes, and are the main geological hazards on such slopes. These rocks are typical spatial blocks. The unstable failure of dangerous rocks poses evident spatial features. Consequently, their stability should be calculated by considering it as a three-dimensional (3-D) problem. In this research, the general block method of fractured rock mass and 3-D discontinuous deformation analysis (DDA) are used to study the stability of dangerous rocks on the slope of a hydropower station. The general block method of fractured rock mass is used to generate dangerous rocks and to assess the geometric mobility of blocks. The progressive unstable failure of dangerous rocks is also analyzed. Moreover, 3-D DDA is implemented to examine the stability of dangerous rocks, including the regularity of their unstable failure. The failure sequence of each batch of blocks estimated by general block theory is the same as that in the results of 3-D DDA. The decrease in the shear parameters of the structural plane shortens the time interval of failures, but increases the number and capacity of blocks.
机译:危险的岩石是分析高斜坡稳定性的最重要因素之一,并且是这种斜坡的主要地质灾害。这些岩石是典型的空间块。危险岩石的不稳定失败摆在很明显的空间特征。因此,应通过将其视为三维(3-D)问题来计算它们的稳定性。在该研究中,裂缝岩体和3-D不连续变形分析(DDA)的一般块方法用于研究水电站斜率危险岩石的稳定性。裂缝岩体的一般块方法用于产生危险岩石,并评估块的几何迁移率。还分析了危险岩石的逐步不稳定失效。此外,实施了3-D DDA以检查危险岩石的稳定性,包括其不稳定故障的规律性。通过一般块理论估计的每批块的故障序列与3-D DDA的结果相同。结构平面的剪切参数的减小缩短了故障的时间间隔,但增加了块的数量和容量。

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