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A hybrid stabilization technique for simulating water wave – Structure interaction by incompressible Smoothed Particle Hydrodynamics (ISPH) method

机译:一种混合稳定技术,用于模拟水波结构相互作用的不可压缩平滑颗粒流体动力学(ISWH)方法

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摘要

The Smoothed Particle Hydrodynamics (SPH) method is emerging as a potential tool for studying water wave related problems, especially for violent free surface flow and large deformation problems. The incompressible SPH (ISPH) computations have been found not to be able to maintain the stability in certain situations and there exist some spurious oscillations in the pressure time history, which is similar to the weakly compressible SPH (WCSPH). One main cause of this problem is related to the non-uniform and clustered distribution of the moving particles. In order to improve the model performance, the paper proposed an efficient hybrid numerical technique aiming to correct the ill particle distributions. The correction approach is realized through the combination of particle shifting and pressure gradient improvement. The advantages of the proposed hybrid technique in improving ISPH calculations are demonstrated through several applications that include solitary wave impact on a slope or overtopping a seawall, and regular wave slamming on the subface of open-piled structure.
机译:平滑粒子流体动力学(SPH)方法是研究水波相关问题的潜在工具,特别是对于剧烈的自由表面流动和大变形问题。已经发现不可压缩的SPH(ISWH)计算不能能够在某些情况下保持稳定性,并且在压力时间历史中存在一些虚假的振荡,这类似于弱可压缩的SPH(WCSPH)。该问题的一个主要原因与移动颗粒的不均匀和聚类分布有关。为了提高模型性能,本文提出了一种旨在纠正ILL粒子分布的有效混合数值技术。通过颗粒移位和压力梯度改善的组合实现校正方法。通过包括几种应用来证明所提出的混合技术在提高ISPH计算中的优点,这些应用包括在坡度上的倾斜或初探的海堤上的孤立波撞击,以及在开放式结构的副表团上撞击常规波。

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