Hydrodynamic analysis of an aquaculture tank-type floating breakwater integrated with perforated baffles

IF 4.3 2区 工程技术 Q1 ENGINEERING, OCEAN
Sen Wang , Tiao-Jian Xu , Tong-Yan Wang , Guo-Hai Dong , Hui-Min Hou
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引用次数: 0

Abstract

An innovative approach that integrates the floating breakwater (FB) with an offshore aquaculture tank is proposed to enhance economic benefits and hydrodynamic properties. To study the hydrodynamics of the integrated structure, a time-synchronized spatial-separated strategy is proposed and applied to the computational fluid dynamics (CFD) to facilitate the complex coupling between waves, mooring force, sloshing flow with the perforated baffle, and body motion. The mooring constraint was achieved by incorporating the catenary mooring theory, as well as employing the volume-averaged porous theory to simulate the perforated baffle effect to provide a low-energy environment required by aquaculture. Corresponding experimental tests were conducted to validate the reliability of the numerical model. The motion response, transmission and reflection coefficients, and sloshing behavior are analyzed to evaluate the hydrodynamics of the integrated structure. Besides, an index referred to as area-weighted-average velocity is introduced to further quantify the kinetic energy of sloshing flow. Results reveal the proposed aquaculture tank-type floating breakwater (AFB) can serve well as tuned liquid dampers (TLDs) to reduce the roll motion, and greatly improve the wave-attenuating capacity. Furthermore, the perforated baffles effectively weaken the sloshing energy at medium and finite filling depths, which are commonly operating depths for aquaculture in a floating closed containment system (FCCS). Overall, the floating breakwater integrated with the aquaculture tank is feasible due to a series of advantages.
带穿孔挡板的水产养殖槽式浮动防波堤的水动力分析
为提高经济效益和水动力特性,提出了一种将浮式防波堤(FB)与近海水产养殖池相结合的创新方法。为研究集成结构的水动力特性,提出了一种时间同步空间分离策略,并将其应用于计算流体动力学(CFD),以促进波浪、系泊力、带孔挡板的荡流和主体运动之间的复杂耦合。系泊约束是通过结合导管系泊理论来实现的,同时采用体积平均多孔理论来模拟穿孔挡板效应,以提供水产养殖所需的低能耗环境。为验证数值模型的可靠性,还进行了相应的实验测试。分析了运动响应、传输和反射系数以及荡流行为,以评估集成结构的流体动力学。此外,还引入了一个称为面积加权平均速度的指标,以进一步量化荡流的动能。研究结果表明,所提出的水产养殖槽式浮动防波堤(AFB)可以很好地用作调谐液体阻尼器(TLD),以减少滚动运动,并大大提高消波能力。此外,穿孔挡板还能有效削弱中等填充深度和有限填充深度的荡能,而这正是浮式封闭围堰系统(FCCS)中水产养殖的常用操作深度。总之,由于具有一系列优点,与水产养殖池一体化的浮式防波堤是可行的。
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来源期刊
Applied Ocean Research
Applied Ocean Research 地学-工程:大洋
CiteScore
8.70
自引率
7.00%
发文量
316
审稿时长
59 days
期刊介绍: The aim of Applied Ocean Research is to encourage the submission of papers that advance the state of knowledge in a range of topics relevant to ocean engineering.
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