Numerical study on the hydrodynamic performance of floating breakwaters with complex configurations

衰减 防波堤 砰的一声 计算流体力学 流量(数学) 数值分析 声学 机械 海洋工程 工程类 结构工程 物理 光学 岩土工程 数学 数学分析 船体
作者
Chunyan Ji,Xiangqian Bian,Sheng Xu,Guo Jianting,Fali Huo
出处
期刊:Ocean Engineering [Elsevier]
卷期号:273: 114032-114032 被引量:11
标识
DOI:10.1016/j.oceaneng.2023.114032
摘要

The low efficiency of the floating breakwater (FB) in attenuating middle and long-period waves is a problem which is urgent to be addressed. To improve the wave attenuation performance, various new configurations have been proposed by scholars. We proposed a new configuration which was designed with wing structure and openings, and it was experimentally proved that the novel design having a significant improvement in attenuating incoming waves. Unfortunately, the flow characteristics around and inside the FB as well as the wave attenuation mechanisms did not be intensively studied. In this paper, CFD analysis is conducted to investigate the hydrodynamic performance of FBs with complex configuration. The accuracy of the numerical method is verified by comparing with the experiment results. Through the numerical studies, the novel wave attenuation mechanisms of the FB with wing structure and openings are revealed. The wave slamming induced by wing structure and the water spraying induced by opening are two main factors which improve wave attenuation efficiency. After that, the optimization design which aims to improve wave attenuation performance is conducted.

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