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Suspension modeling using smoothed particle hydrodynamics: Accuracy of the viscosity formulation and the suspended body dynamics

机译:使用平滑粒子流体动力学的悬浮模型:粘度配方和悬浮体动力学的准确性

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摘要

In this paper an approach for the numerical modeling of particulate suspensions is illustrated, its implementation described and its application investigated. The numerical fluid model is based on the smoothed particle hydrodynamics (SPH) method. The suspended solids are modeled as clusters of SPH particles using a rigid body motion solver. Two different SPH formulations for the viscous stress are applied and their characteristics are compared. The influence of numerical and physical parameters on the viscosity of the system is analyzed. The rotational motion of suspended solids under shear as well as the dependency of the viscosity on the solid volume fraction is investigated and compared to analytical models. Guidelines for SPH suspension simulations are derived aiming at the minimization of numerical errors.
机译:在本文中,阐述了一种用于颗粒悬浮液数值模拟的方法,描述了其实现方式并研究了其应用。数值流体模型基于平滑粒子流体动力学(SPH)方法。使用刚体运动求解器将悬浮的固体建模为SPH粒子的簇。应用了两种不同的SPH粘滞应力配方,并比较了它们的特性。分析了数值和物理参数对系统粘度的影响。研究了悬浮固体在剪切作用下的旋转运动以及粘度对固体体积分数的依赖性,并将其与分析模型进行了比较。旨在最小化数值误差的SPH悬架模拟指南已获得。

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