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A consistent reflected image particle approach to the treatment of boundary conditions in smoothed particle hydrodynamics

机译:一致的反射图像粒子方法在平滑粒子流体动力学中处理边界条件

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The particle deficiency problem in the presence of a rigid wall for smoothed particle hydrodynamics (SPH) is considered. The problem arises from insufficient information being available to perform accurate interpolation of data at particles located nearer to the boundary than the support of the interpolation kernel. The standard method for overcoming this problem is based on the introduction of image particles to populate the deficient regions and the use of linear extrapolation to determine the velocity of these image particles from that of fluid particles. A consistent treatment of boundary conditions, utilising the momentum equation to obtain approximations to the velocity of image particles, is described. The method ensures second order approximation of the boundary conditions. It is validated for Poiseuille and Couette flow, for which analytical series solutions exist and shows second order convergence under certain conditions.
机译:考虑了在存在用于平滑粒子流体动力学(SPH)的刚性壁的情况下的粒子不足问题。该问题是由于没有足够的信息可用于在比插值内核支持的位置更靠近边界的粒子上执行数据的精确插值。克服此问题的标准方法是基于引入图像粒子填充缺陷区域,以及使用线性外推法从流体粒子的速度确定这些图像粒子的速度。描述了边界条件的一致处理,利用动量方程获得图像粒子速度的近似值。该方法确保边界条件的二阶近似。它已针对Poiseuille和Couette流进行了验证,存在存在分析级数解,并且在某些条件下显示出二阶收敛。

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