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Deformation and stability investigations in 3-D of an excavated rock slope in a hydroelectric power station in China

机译:中国水电站开挖岩石边坡三维变形与稳定性研究

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A three-dimensional numerical model was built incorporating stratigraphy, geological structures and mechanical properties of rock masses and discontinuities to perform stress, deformation and stability analyses for an excavated slope in China using the 3DEC software. Based on this model, numerical modeling was conducted to study the effect of boundary conditions, lateral stress ratio, and rock mass and fault parameter variability and uncertainty on the deformation and stability of the excavated rock slope. Displacement comparisons were made between the field monitoring values and numerical simulations. In the 3DEC modeling, both the stress and zero displacement boundary conditions were used to represent the lateral boundaries of the slope. Because the lateral boundaries were placed not far enough from the faults, the stress boundary conditions provided realistic results compared to the zero displacement boundary conditions. The best comparison with the field monitoring values were obtained when k(0max) is in the range 1-1.5 and k(0min) = 0.7. The best comparison between the numerical results and the monitoring data were obtained when the rock mass and fault property values were reduced by about 30% from the average material property values. The modeling approaches given in this paper should be useful in performing realistic three-dimensional stress, deformation and stability analysis of rock slopes.
机译:建立了三维数值模型,结合了地层,地质结构和岩体力学特性以及间断面,使用3DEC软件对中国开挖边坡进行了应力,变形和稳定性分析。在此模型的基础上,进行了数值模拟,研究了边界条件,侧向应力比,岩体质量以及断层参数的变化性和不确定性对开挖岩质边坡变形和稳定性的影响。在现场监测值和数值模拟之间进行了位移比较。在3DEC建模中,应力和零位移边界条件都用于表示边坡的横向边界。由于横向边界距断层的距离不够远,因此与零位移边界条件相比,应力边界条件提供了逼真的结果。当k(0max)在1-1.5范围内且k(0min)= 0.7时,可以与现场监测值进行最佳比较。当岩体质量和断层特性值比平均材料特性值降低约30%时,可以得到数值结果和监测数据的最佳比较。本文给出的建模方法应该对进行实际的岩质边坡三维应力,变形和稳定性分析有用。

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