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Modeling 3D non-Newtonian solid-liquid flows with a free-surface using DEM-MPS

机译:使用DEM-MPS建模3D非牛顿固液流与自由表面

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摘要

Due to the complicated interactions between the liquid phase and solid particles, it is important to adequately simulate the components themselves in a non-Newtonian solid liquid flow with a free surface. In this work, a hybrid computational framework is presented to simulate the non-Newtonian free-surface flow of the liquid-grain mixture by coupling the Moving Particle Semi-implicit (MPS) method and the Discrete Element Method (DEM). The DEM governs the motion of the solid particles, while the MPS is extended to model the non-Newtonian rheology and free surfaces. The robustness and the correctness of the proposed method were illustrated by several numerical examples involving non-Newtonian free surface flows with solid particles. The simulated results were in good agreement with analytical solutions or available experimental data in the literatures.
机译:由于液相和固体颗粒之间的相互作用复杂,重要的是在具有自由表面的非牛顿固体液体流动中充分模拟组分本身。在这项工作中,提出了一种混合计算框架通过耦合移动粒子半隐式(MPS)方法和离散元件方法(DEM)来模拟液体混合物的非牛顿自由表面流动。 DEM控制固体颗粒的运动,而MPS延伸以模拟非牛顿流变学和自由表面。所提出的方法的鲁棒性和正确性由涉及非牛顿自由表面流动的若干数值示例用固体颗粒进行说明。模拟结果与分析解决方案或文献中的可用实验数据吻合良好。

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