Surface Gravity Wave Generation and Interference Effects in SPH Models

Zijun Shen
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Abstract

DualSPHysics is an open-source implementation of the SPH (smoothed-particle hydrodynamics) particle mechanics model built for applications in coastal and ocean engineering, suitable for cases possessing complex surface boundary conditions and interactions of fluids with bound objects. This work seeks to examine the general plausibility of utilization of DualSPHysics for modeling cases involving the diffraction and interference effects of surface gravity waves. The work attempts to seek optimized parameters for wave generation intended to be used in diffraction and interference cases at lower simulation resolutions by taking advantage of simulation parameters such as gravity, construct simple examples to demonstrate the plausibility to use the model with more complex cases (possibly involving diffraction and interference off lattices), and validate wave behaviors (related to gravity) within the model using accepted theories of surface wave propagation. The paper identifies several limitations whose mitigation was deemed necessary for further success applying DualSPHysics to diffraction and interference problems, as well as further analysis and tests needed for a complete assessment of the tested cases.
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SPH 模型中的地表重力波生成和干涉效应
DualSPHysics 是 SPH(smoothed-particle hydrodynamics,平滑粒子流体力学)粒子力学模 型的开放源码实现,主要应用于海岸和海洋工程,适用于具有复杂表面边界条件和流体与约束 物体相互作用的情况。这项工作旨在研究利用 DualSPHysics 对涉及表面重力波衍射和干涉效应的情况进行建模的一般可行性。这项工作试图利用重力等仿真参数的优势,为波浪生成寻找优化参数,以便在较低的仿真分辨率下用于衍射和干涉情况;构建简单的示例,以证明将模型用于更复杂的情况(可能涉及晶格外的衍射和干涉)的合理性;并利用公认的表面波传播理论,验证模型中(与重力相关的)波浪行为。本文指出了一些局限性,认为要进一步成功地将 DualSPHysics 应用于衍射和干涉问题,就必须缓解这些局限性,还指出了对测试案例进行全面评估所需的进一步分析和测试。
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