应用于研究波浪传播和破碎的数值算法调查

IF 4.6 2区 工程技术 Q1 ENGINEERING, CIVIL Ocean Engineering Pub Date : 2024-09-16 DOI:10.1016/j.oceaneng.2024.119254
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引用次数: 0

摘要

捕捉自由表面的大变形是一项挑战。本研究开发了基于无网格法的数值算法,用于研究波的传播和破碎。构建了一个新的梯度模型来解决数值扰动问题。提出了一种检测自由表面颗粒的新方法,以提高精度。采用链表搜索法提高搜索速度,利用共轭梯度(CG)方法求解泊松方程,提高了计算效率。建立了高精度数值波槽,生成的波与解析解吻合良好。显示的速度场和波浪传播过程证实了波浪衰减。研究了传播到岸边的孤波的上升和破碎。与分析解和实验结果的比较表明,该数值算法能够很好地模拟波的传播和破碎。在海岸上设置了三个压力点,以跟踪波浪破碎时的冲击力。根据最后进行的小波变换分析,波浪破碎后,波频将集中在低频,并产生更大的能量。
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Investigation of numerical algorithms applied to study the wave propagation and breaking

It is a challenge to capture the large deformation of the free surface. The present study develops numerical algorithms based on the meshless method for investigating wave propagation and breaking. A new gradient model is constructed to solve numerical perturbations. A new method for detecting free surface particles is proposed to improve the precision. The linked list search method is used to improve the searching speed, and the conjugate gradient (CG) approach is utilized to solve the Poisson equation, which enhances the calculation efficiency. A high-precision numerical wave flume is established, and the generated waves agree well with the analytical solution. The velocity field and the wave propagation process are displayed to confirm the wave attenuation. The runup and breaking of the solitary waves propagating to the shore are studied. Comparisons with the analytical solutions and experimental results indicate that this numerical algorithm can simulate wave propagation and break very well. Three pressure points were installed on the coast to track the impact close to the wave breaking. After the wave breaks, the wave frequency will be concentrated at a low frequency and produce more energy according to the wavelet transform analysis that is finally performed.

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来源期刊
Ocean Engineering
Ocean Engineering 工程技术-工程:大洋
CiteScore
7.30
自引率
34.00%
发文量
2379
审稿时长
8.1 months
期刊介绍: Ocean Engineering provides a medium for the publication of original research and development work in the field of ocean engineering. Ocean Engineering seeks papers in the following topics.
期刊最新文献
Investigation of numerical algorithms applied to study the wave propagation and breaking A hybrid tracking method for maritime obstacles using sensor data Real-time prediction of ship maneuvering motion in waves based on an improved reduced-order model An efficient method to simulate ship self-propulsion in shallow waters and its application to optimize hull lines Numerical investigation of punch-through mitigation in stiff-over-soft clays using skirted spudcan
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