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Wave and tidal power

机译:波浪和潮汐力量

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摘要

Floating offshore wind is a rapidly growing technology that is attracting global interest. To date, most of the demonstrated concepts for offshore floating wind are based on a simple one turbine-one platform system, which might not be the most efficient approach for manufacturing, transportation, and onsite installation. Very large floating structures (VLFS), which allow for operation of multiple turbines, might be an effective alternative to traditional floating foundations. However, the large bending moment caused by waves is a major concern for a VLFS foundation. Adding hinges into the structure might help to alleviate the bending moment. Based on the discrete-module-beam-bending hydroelasticity method, the effects of hinge numbers on the bending moment will be investigated in detail and will be presented in this paper. Overall, the bending moment is reduced when the vertical displacement is increased by the addition of hinges, which indicates a compromise when choosing hinge numbers. In addition, a feasibility study for the application of the multihinged VLFS as a floating wind platform will be provided. It demonstrates that the existence of wind turbines might further reduce the wave-induced bending moment, but they enlarge the total bending moment by introducing a still water bending moment. The effect of wind turbines on the vertical displacement of the multihinged VLFS is insignificant.
机译:浮动海上风是一种快速增长的技术,吸引了全球兴趣。迄今为止,海上浮风的大多数证明概念都是基于一个简单的一个涡轮机 - 一个平台系统,这可能不是最有效的制造,运输和现场安装方法。非常大的浮动结构(VLF)允许多个涡轮机操作,这可能是传统浮动基础的有效替代方案。然而,由波浪引起的大弯矩是VLFS基础的主要问题。将铰链添加到结构中可能有助于缓解弯矩。基于离散模块束弯曲的水力弹性方法,将详细研究铰接号对弯矩上的效果,并将在本文中提出。总的来说,当通过添加铰链增加垂直位移时,弯矩减小,这表示在选择铰链号时的折衷。另外,将提供用于将多个VLF应用于浮动风平台的可行性研究。它表明风力涡轮机的存在可能进一步降低波引起的弯曲力矩,但是它们通过引入静止水弯矩来扩大总弯矩。风力涡轮机对多络VLF垂直位移的影响是微不足道的。

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  • 来源
    《Oceanographic Literature Review》 |2021年第3期|696-699|共4页
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