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Experimental Validation of Smoothed Particle Hydrodynamics on Generation and Propagation of Water Waves

机译:光滑粒子流体动力学对水波产生和传播的实验验证

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This paper is aimed to validate smoothed particle hydrodynamics (SPH) on the generation and propagation of water waves. It is a classical problem in marine engineering but a still important problem because there is a strong demand to generate intended nonlinear water waves and to predict complicated interactions between nonlinear water waves and fixed/floating bodies, which is indispensable for further ocean utilization and development. A dedicated experiment was conducted in a large wave basin of Kobe University equipped with a piston-type wavemaker, at three water depths using several amplitudes and periods of piston motion for the validation of SPH mainly on the long-distance propagation of water waves. An SPH-based two-dimensional numerical wave tank (NWT) is used for numerical simulation and is accelerated by a graphics processing units (GPU), assuming future applications to realistic engineering problems. In addition, comparison of large-deformation of shallow water waves, when passing over a fixed box-shape obstacle, is also investigated to discuss the applicability to wave-structure interaction problems. Finally, an SPH-based three-dimensional NWT is also validated by comparing with an experiment and two-dimensional simulation. Through these validation studies, detailed discussion on the accuracy of SPH simulation of water waves is made as well as providing a recommended set of SPH parameters.
机译:本文旨在验证水波的产生和传播的平滑粒子流体动力学(SPH)。它是海洋工程中的经典问题,但仍然是一个重要的问题,因为强烈要求生成预期的非线性水波,并预测非线性水波与固定/浮体之间的复杂相互作用,这对于进一步的海洋利用和开发是必不可少的。在神户大学的一个大型水盆中,进行了专门的实验,该水盆在三个水深处使用多个活塞运动的振幅和周期在三个水深处进行了SPH验证,主要是针对水波的长距离传播。基于SPH的二维数值波箱(NWT)用于数值模拟,并通过图形处理单元(GPU)进行加速,假设将来会应用于实际的工程问题。此外,还研究了浅水波在经过固定的箱形障碍物时的大变形比较,以探讨其对波结构相互作用问题的适用性。最后,通过与实验和二维仿真的比较,也验证了基于SPH的三维NWT。通过这些验证研究,对水浪的SPH模拟的准确性进行了详细讨论,并提供了建议的SPH参数集。

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