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Improved particle shifting technology and optimized free-surface detection method for free-surface flows in smoothed particle hydrodynamics

机译:改进的粒子迁移技术和优化的平滑表面流体动力学中自由表面流动的自由表面检测方法

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This paper presents an improved particle shifting technology (IPST) for smoothed particle hydrodynamics (SPH). It allows particles in the vicinity of the free-surface to be shifted in all the directions in case they are not uniformly distributed, rather than just shifted tangentially to the free-surface in some conventional particle shifting technologies. Therefore, with the new technique, the imprecise shifting due to the inaccurate evaluations of the local normal and tangential vectors of the free-surface can be avoided, and a more uniform particle distribution near the free-surface can be obtained even for long-term simulations, which improves the accuracy and stability of the SPH method. Besides, by combining the advantages of two existing free-surface detection methods, an optimized detection approach is provided. It is capable of detecting the free-surface particles accurately, and meanwhile, it is easier to implement and requires lower computational costs, especially for three-dimensional problems. Several numerical tests show that the proposed IPST and the optimized free-surface detection method are robust and accurate for the simulation of a variety of free-surface flows. (C) 2019 Elsevier B.V. All rights reserved.
机译:本文提出了一种用于平滑粒子流体动力学(SPH)的改进的粒子移位技术(IPST)。它允许在自由表面附近的粒子在不均匀分布的情况下在所有方向上移动,而不是在某些常规粒子移动技术中仅沿切线方向相对于自由表面移动。因此,利用新技术,可以避免由于对自由表面的局部法线和切向向量的评估不准确而导致的不精确偏移,并​​且即使在长期使用下,也可以在自由表面附近获得更均匀的粒子分布。仿真,从而提高了SPH方法的准确性和稳定性。此外,结合两种现有的自由表面检测方法的优点,提供了一种优化的检测方法。它能够准确地检测自由表面的粒子,同时更易于实现,并且需要较低的计算成本,尤其是对于三维问题。若干数值测试表明,所提出的IPST和优化的自由表面检测方法对于模拟各种自由表面流具有鲁棒性和准确性。 (C)2019 Elsevier B.V.保留所有权利。

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