Hydrodynamic performance study of floating photovoltaic arrays with multiple floating bodies

IF 4.3 2区 工程技术 Q1 ENGINEERING, OCEAN
Wanhai Xu, Yumeng Sun, Ziqi He
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引用次数: 0

Abstract

In the context of the global transition to renewable energy, floating photovoltaic systems have garnered significant attention as an innovative method of energy utilization. To investigate the impact of different arrangements of floating photovoltaic (FPV) systems on hydrodynamic performance, fully coupled numerical simulations of wind, wave and current were conducted in ANSYS-AQWA for three arrangements: rectangular array, linear array, and honeycomb-like array. The analysis focused on the six degrees of freedom motions and maximum mooring force under operational and survival conditions. It can be found that the rectangular array exhibits the strongest system stability, effectively reducing the mooring force and showing insensitivity to variations in load incident angles. These findings provide a theoretical foundation and engineering guidance for the design of FPV systems, offering substantial practical application value.
多浮体浮动光伏阵列的水动力性能研究
在全球向可再生能源转型的背景下,浮动光伏系统作为一种创新的能源利用方法受到了广泛关注。为了研究浮动光伏(FPV)系统的不同布置对水动力性能的影响,在 ANSYS-AQWA 中对矩形阵列、线性阵列和蜂窝状阵列三种布置进行了风、波、流全耦合数值模拟。分析的重点是运行和生存条件下的六自由度运动和最大系泊力。结果表明,矩形阵列的系统稳定性最强,能有效降低系泊力,并且对负载入射角的变化不敏感。这些发现为 FPV 系统的设计提供了理论基础和工程指导,具有重要的实际应用价值。
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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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