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光伏发电技术 储能系统 ★ 5.0

一种新型浮筒式 offshore 浮动光伏阵列连接件与系泊力动态特性的实验研究

Experimental investigation on the dynamic characteristics of connector and mooring force for a novel pontoon-type offshore floating photovoltaic array

作者 Jijian Lianac · Zheng Cao · Wenhe Lua · Peiyao Liac · Dongming Liu · Ye Yaoac · Nan Shaoac · Haitao Liacf
期刊 Solar Energy
出版日期 2025年1月
卷/期 第 301 卷
技术分类 光伏发电技术
技术标签 储能系统
相关度评分 ★★★★★ 5.0 / 5.0
关键词 A robust and lightweight pontoon-type array with semi-rigid connection systems for offshore floating photovoltaic (OFPV) plant has been conducted.
语言:

中文摘要

摘要 为满足日益增长的可再生能源需求,海上浮动光伏(Offshore Floating Photovoltaic, OFPV)系统受到越来越多的关注。本文提出了一种新型浮筒式平台用于OFPV电站,并在规则波和不规则波条件下开展了缩尺比为1:14的一系列模型试验。通过四种不同规模的阵列构型,研究了波长、波浪周期、波陡、连接节点数量以及阵列尺寸对系泊力和连接节点应力响应的影响。实验结果表明,波陡(H/L)对系泊力和节点受力具有显著影响,当H/L > 0.02且波浪周期减小时,系泊力和节点力均呈现指数增长趋势。由于阵列具有多个固有频率,必须避免其与波浪频率及其谐波发生共振,以防个别系泊缆线上出现过大的张力集中现象。此外,靠近阵列中心区域的连接节点承受来自周围浮筒更大的荷载,导致更高的应力集中。增加浮筒之间连接节点的数量可提高阵列的整体刚度,从而有效降低系泊力及单个连接节点上的应力水平。

English Abstract

Abstract To meet the growing demand for renewable energy, Offshore Floating Photovoltaic (OFPV) systems have attracted increasing attention. In this paper, a novel pontoon-type platform was proposed for OFPV plant. A series of model tests at a scale of 1:14 were conducted under both regular and irregular wave conditions. Four array configurations of varying sizes were tested to investigate the effects of wavelength, wave period, wave steepness, the number of connection nodes, and array size on the mooring force and stress responses of the connection nodes. Experimental results show that wave steepness ( H / L ) significantly affects both mooring forces and nodal force, with exponential growth observed when H / L > 0.02 as wave period decreases. Since arrays exhibit multiple natural frequencies, resonance with wave frequencies and harmonics must be avoided to prevent excessive tension concentration on individual mooring lines. Additionally, connection nodes near the array center experience greater loads from surrounding pontoons, leading to higher stress concentrations. Increasing the number of connection nodes between pontoons can enhance array stiffness, thereby reducing both mooring forces and stress on individual connection nodes.
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SunView 深度解读

该海上漂浮光伏阵列研究对阳光电源SG系列逆变器及储能系统具有重要应用价值。研究揭示的波浪周期与系泊力的共振特性,为我司1500V光伏系统在海上平台的抗震动设计提供依据。阵列刚度优化可降低连接节点应力,启发我们在PowerTitan储能系统的模块化连接设计中采用柔性拓扑,通过iSolarCloud平台实时监测应力数据,结合VSG控制技术应对海洋环境的功率波动,提升ST系列PCS在海上光储一体化场景的可靠性与经济性。