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Numerical simulation of long wave runup for breaking and nonbreaking waves

机译:破碎波和非破碎波的长波助跑数值模拟

摘要

Tsunamis produce a wealth of quantitative data that can be used to improve tsunami hazard awareness and to increase the preparedness of the population at risk. These data also allow for a performance evaluation of the coastal infrastructure and observations of sediment transport, erosion, and deposition. The interaction of the tsunami with coastal infrastructures and with the movable sediment bed is a three-dimensional process. Therefore, for runup and inundation prediction, three-dimensional numerical models must be employed. In this study, we have employed Smoothed Particle Hydrodynamics (SPH) to simulate tsunami runup on idealized geometries for the validation and exploration of three-dimensional flow structures in tsunamis. We make use of the canonical experiments for long-wave runup for breaking and nonbreaking waves. The results of our study prove that SPH is able to reproduce the runup of long waves for different initial and geometric conditions. We have also investigated the applicability and the effectiveness of different viscous terms that are available in the SPH literature. Additionally, a new breaking criterion based on numerical experiments is introduced, and its similarities and differences with existing criteria are discussed.
机译:海啸产生了大量的定量数据,可用于提高对海啸危害的认识并提高处于危险中的人口的准备程度。这些数据还可以对沿海基础设施进行性能评估,并观察沉积物的运输,侵蚀和沉积。海啸与沿海基础设施以及可移动的泥沙床的相互作用是一个三维过程。因此,对于加速和淹没预测,必须采用三维数值模型。在这项研究中,我们采用平滑粒子流体动力学(SPH)在理想化的几何形状上模拟海啸上升,以验证和探索海啸中的三维流动结构。我们利用规范实验对破碎波和非破碎波进行长波运行。我们的研究结果证明,SPH能够在不同的初始和几何条件下重现长波的径迹。我们还研究了SPH文献中可用的不同粘性术语的适用性和有效性。另外,介绍了一种基于数值实验的断裂准则,并讨论了其与现有准则的异同。

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