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Smoothed Particle Hydrodynamics Simulation of Water-Soil Mixture Flows

机译:水-土混合流的光滑粒子流体动力学模拟

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摘要

A two-phase smoothed particle hydrodynamics (SPH) mixture model to simulate water-soil interactions is presented. In this model, each phase of the mixture satisfies its own conservation equations of mass and momentum. The water is considered as a Newtonian fluid and the soil is modeled as an elastic-perfectly plastic material. Drucker-Prager criterion is employed to test the yielding of the soil and an associated flow rule is adopted to describe the soil behavior after yielding. Interactions between water and soil are modeled by the viscous drag force according to Darcy's law. With this mixture model, it is possible to investigate the temporal and spatial evolutions of the volume fractions of both phases. This study first examines the proposed SPH mixture model for two single-phase flows, i.e.,water dam break and sand column collapse, respectively. The drag force model is also tested using the problem of flow in porous media. Then its application to the problem of soil excavation by high-velocity impinging water jets is illustrated. The flow pattern, profile of excavation hole, evolutions of pressure, volume fraction, and plastic shear strain during the impinging process are obtained and found to be qualitatively good compared with previous experimental observations and numerical simulations. Effects of hydraulic conductivity and initial volume fractions of water and soil on the excavation are revealed. Numerical simulation shows that the proposed method is robust and efficient, and can be applied to water-soil mixture flow problems in hydraulic engineering and geotechniques, especially to those cases where volume fractions play important roles in the mixture dynamics.
机译:提出了模拟水-土相互作用的两相平滑粒子流体动力学(SPH)混合模型。在该模型中,混合物的每个相都满足其自身的质量和动量守恒方程。水被视为牛顿流体,土壤被建模为具有弹性的可塑性材料。采用Drucker-Prager准则测试土壤的屈服,并采用相关的流量法则来描述屈服后的土壤行为。水和土壤之间的相互作用是根据达西定律用粘性阻力建模的。利用这种混合模型,可以研究两个相的体积分数的时间和空间演变。这项研究首先针对两种单相流,即水坝溃坝和砂柱塌陷,研究了提出的SPH混合模型。还使用多孔介质中的流动问题测试了阻力模型。然后说明了其在高速撞击水射流开挖土壤中的应用。与以前的实验观察和数值模拟相比,获得了撞击过程中的流动模式,开挖孔的轮廓,压力,体积分数和塑性剪切应变的变化,并且在质量上都比较好。揭示了水力传导率和水和土壤的初始体积分数对基坑的影响。数值模拟表明,该方法是鲁棒且有效的,可用于水利工程和岩土工程中的水土混合流问题,尤其是体积分数在混合动力中起重要作用的情况。

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