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Prescribed Velocity Gradients for Highly Viscous SPH Fluids with Vorticity Diffusion

机译:具有涡流扩散的高粘度SPH流体的规定速度梯度

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Working with prescribed velocity gradients is a promising approach to efficiently and robustly simulate highly viscous SPH fluids. Such approaches allow to explicitly and independently process shear rate, spin, and expansion rate. This can be used to, e.g., avoid interferences between pressure and viscosity solvers. Another interesting aspect is the possibility to explicitly process the vorticity, e.g., to preserve the vorticity. In this context, this paper proposes a novel variant of the prescribed-gradient idea that handles vorticity in a physically motivated way. In contrast to a less appropriate vorticity preservation that has been used in a previous approach, vorticity is diffused. The paper illustrates the utility of the vorticity diffusion. Therefore, comparisons of the proposed vorticity diffusion with vorticity preservation and additionally with vorticity damping are presented. The paper further discusses the relation between prescribed velocity gradients and prescribed velocity Laplacians which improves the intuition behind the prescribed-gradient method for highly viscous SPH fluids. Finally, the paper discusses the relation of the proposed method to a physically correct implicit viscosity formulation.
机译:使用规定的速度梯度进行工作是有效且稳健地模拟高粘性SPH流体的一种有前途的方法。这种方法允许显式且独立地处理剪切速率,旋转和膨胀速率。例如,这可用于避免压力和粘度求解器之间的干扰。另一个有趣的方面是可以显式处理涡旋,例如保持涡旋的可能性。在这种情况下,本文提出了一种规定梯度概念的新颖变体,该变体以物理方式处理涡旋。与先前方法中使用的不太合适的涡流保持相反,涡流被扩散。本文说明了涡度扩散的效用。因此,提出的拟议的涡度扩散与涡度保持以及附加的涡度阻尼进行了比较。本文进一步讨论了规定速度梯度与规定速度拉普拉斯算子之间的关系,该关系改善了高粘性SPH流体的规定梯度方法背后的直觉。最后,本文讨论了该方法与物理正确的隐式粘度公式之间的关系。

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