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A normalized iterative Smoothed Particle Hydrodynamics method

机译:归一化迭代平滑粒子流体动力学方法

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In this paper we investigate on a normalized iterative approach to improve the Smoothed Particle Hydrodynamics (SPH) estimate of a function. The method iterates on the residuals of an initial SPH approximation to obtain a more accurate solution. The iterative strategy preserves the matrix-free nature of the method, does not require changes on the kernel function and it is not affected by disordered data distribution. The iterative refinement is further improved by ensuring linear approximation order to the starting iterative values. We analyze the accuracy and the convergence of the method with the standard and normalized formulation giving evidence of the enhancements obtained with both uniform and non-uniform data density. Numerical experiments in 2D domain with different data sets are presented to validate the iterative approach.
机译:在本文中,我们研究了一种规范化的迭代方法来改善功能的平滑粒子流体动力学(SPH)估计。该方法迭代初始SPH近似的残差以获得更准确的解决方案。迭代策略保留了该方法的无矩阵性质,不需要更改内核功能,并且不受数据分布的影响。通过确保开始迭代值的线性近似顺序,进一步改善迭代细化。我们利用标准和标准化配方分析了方法的准确性和收敛,提供了通过均匀和不均匀的数据密度获得的增强功能。提出了具有不同数据集的2D域中的数值实验以验证迭代方法。

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