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Modeling of granular column collapses with μ(/) rheology using smoothed particle hydrodynamic method

机译:使用平滑粒子流体动力学方法以μ(/)流变学对粒状柱塌陷进行建模

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摘要

In this paper, to simulate free surface flows of granular materials in a dense regime as a continuum media, a 2D SPH model is developed. The dense flow is characterized as a pressure dependent visco-plastic material based on a local constitutive law to calculate effective viscosity related to local pressure and the norm of strain rate tensor in the numerical method. A simple regularization technique is proposed to reproduce stopping condition and the free surface of a granular flow where the pressure vanishes. Pressure fluctuation as the main drawback of the weakly compressible SPH method leads to an inaccurate pressure distribution. This numerical instability increases at the free surface due to errors associated with the truncated kernels. In this work, a new algorithm is proposed to remove the nonphysical fluctuations by relating divergence of velocity to the Laplacian of pressure. The algorithm is validated for reproducing the dynamics and deposits of collapsing granular columns. The excellent agreement with experimental data is obtained. The maximum thickness of a granular flow on a rough inclined plane is obtained based on the local rheology model. The run-out distances and slopes of the deposits in the simulations also show good agreement with the values found in the experiments.
机译:在本文中,为了模拟在稠密状态下作为连续介质的粒状材料的自由表面流动,建立了二维SPH模型。根据局部本构定律,将致密流表征为与压力有关的粘塑性材料,以数值方法计算与局部压力和应变率张量范数有关的有效粘度。提出了一种简单的正则化技术来再现停止条件和压力消失的颗粒流的自由表面。压力波动是弱压缩SPH方法的主要缺点,导致压力分布不准确。由于与截短的籽粒相关的误差,这种数值不稳定性在自由表面上增加。在这项工作中,提出了一种新的算法,通过将速度的发散与压力的拉普拉斯相关联来消除非物理波动。该算法经过验证,可用于重现折叠颗粒柱的动力学和沉积物。获得与实验数据的极好的一致性。基于局部流变模型,可以得到粗糙斜面上颗粒流的最大厚度。模拟中沉积物的跳动距离和斜率也与实验中的值显示出很好的一致性。

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