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Numerical Simulation of Failure Behavior of Granular Debris Flows Based on Flume Model Tests

机译:基于水模型试验的粒状碎片流动故障行为的数值模拟

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In this study, the failure behaviors of debris flows were studied by flume model tests with artificial rainfall and numerical simulations (PFC3D). Model tests revealed that grain sizes distribution had profound effects on failure mode, and the failure in slope of medium sand started with cracks at crest and took the form of retrogressive toe sliding failure. With the increase of fine particles in soil, the failure mode of the slopes changed to fluidized flow. The discrete element methodPFC3Dcan overcome the hypothesis of the traditional continuous medium mechanic and consider the simple characteristics of particle. Thus, a numerical simulations model considering liquid-solid coupled method has been developed to simulate the debris flow. Comparing the experimental results, the numerical simulation result indicated that the failure mode of the failure of medium sand slope was retrogressive toe sliding, and the failure of fine sand slope was fluidized sliding. The simulation result is consistent with the model test and theoretical analysis, and grain sizes distribution caused different failure behavior of granular debris flows. This research should be a guide to explore the theory of debris flow and to improve the prevention and reduction of debris flow.
机译:在这项研究中,通过使用人工降雨和数值模拟(PFC3D)的水模型试验研究了碎片流动的故障行为。模型测试显示,谷物尺寸分布对故障模式具有深远的影响,中等沙子斜率的故障始于嵴的裂缝,并采取了倒退的脚趾滑动失败的形式。随着土壤中细颗粒的增加,斜坡的故障模式变为流化流动。离散元件PFC3DCAN克服了传统连续介质机制的假设,并考虑了颗粒的简单特征。因此,已经开发了考虑液体固体耦合方法的数值模拟模型来模拟碎屑流动。比较实验结果,数值模拟结果表明,中砂坡失效的故障模式是倒退的脚趾滑动,并且细砂斜面的失效是流化滑动。仿真结果与模型测试和理论分析一致,谷物尺寸分布引起粒状碎片流动的不同故障行为。本研究应该是探索碎片流动理论的指南,并改善碎片流动的预防和减少。

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