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Research on the Overtopping-Induced Breaching Mechanism of Tailings Dam and Its Numerical Simulation

机译:尾矿坝泛型诱导突破机制及其数值模拟研究

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The centrifugal model test system is utilized to reappear the breaching process of a tailings dam. The results show that there are significant differences in breaching processes between tailings dams and earth-rockfill dams. Influenced by the special physical and mechanical properties of tailings, the breaching processes of tailings dams are of short duration, and the flood flow through the breach increase rapidly. Based on the centrifugal test results, considering the special physical and mechanical properties of tailings, a mathematical model for tailings dam breaching is established. In the model, the vertical undercutting and horizontal expansion are simulated utilizing the erosion rate formula which is derived from shear stress principle of water flow; limit equilibrium method is used to analyze the breach slope stability. In addition, the model adopts iterative calculation method to simulate the whole breaching process. The analysis results show that, the proposed model is applicable in modeling the dam breaching process for tailings dam due to overtopping.
机译:离心模型测试系统用于重新出现尾矿坝的突破过程。结果表明,尾矿坝和地球堆石坝之间的违约过程存在显着差异。受尾矿特殊物理和机械性能的影响,尾矿坝的突破过程短暂,潮流通过违规速度迅速增加。基于离心试验结果,考虑到尾矿的特殊物理和力学性能,建立了尾矿坝突破的数学模型。在该模型中,利用水流剪切应力原理的腐蚀速率公式模拟垂直底切和水平膨胀;限制平衡方法用于分析突发斜率稳定性。此外,该模型采用迭代计算方法来模拟整个违规过程。分析结果表明,该拟议模型适用于根据初始运行的尾矿坝建模尾部漏洞。

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