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Improvements in highly viscous fluid simulation using a fully implicit SPH method

机译:使用完全隐含的SPH方法改进高度粘性的流体仿真

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摘要

This study describes the application of two main improvements in highly viscous fluid simulations using the smoothed particle hydrodynamics (SPH) method: an implicit time integration scheme to overcome the problem of impractically small time step restriction and the introduction of air ghost particles to fix problems regarding the free surface treatment. This study adopts the incompressible SPH as a basis for the implementation of these improvements, which guarantees a stable and accurate pressure distribution. We verified the proposed implicit time integration scheme with simulations of pipe flow and the free surface treatment with a simple hydrostatic problem. As a result, the free surface of the hydrostatic problem became very smooth and stable. In addition, we conducted a variety of dam-break simulations to validate this proposed SPH method, as well as to analyze the density and divergence error. Finally, we demonstrate the potential of this method with the highly viscous vertical jet flow over a horizontal plate test, which features a complex viscous coiling behavior.
机译:本研究描述了使用平滑的粒子流体动力学(SPH)方法(SPH)方法的两个主要改进的应用:隐含时间整合方案,以克服不切实际的时间步骤限制的问题和气候粒子的引入来解决有关的问题自由表面处理。本研究采用了不可压缩的SPH作为实施这些改进的基础,保证了稳定和准确的压力分布。我们验证了采用管道流动模拟和具有简单静水问题的自由表面处理的所提出的隐式时间集成方案。结果,静水压问题的自由表面变得非常光滑稳定。此外,我们进行了各种坝中模拟以验证这一提出的SPH方法,以及分析密度和发散误差。最后,我们展示了这种方法的潜力,在水平板测试上具有高粘性的垂直射流,其具有复杂的粘性卷绕行为。

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