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A review of numerical modelling and optimisation of the floating support structure for offshore wind turbines

机译:回顾数值建模和优化海上浮动支撑结构的风力涡轮机

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摘要

Compared to onshore wind power, floating offshore wind power is a promising renewable energy source due to higher wind speeds and larger suitable available areas. However, costs are still too high compared to onshore wind power. In general, the economic viability of offshore wind technology decreases with greater water depth and distance from shore. Floating wind platforms are more competitive compared to fixed offshore structures above a certain water depth, but there is still great variety and no clear design convergence. Therefore, optimisation of the floating support structure in the preliminary phase of the design process is still of great importance, often up to personal experience and sensibility. It is fundamental that a suitable optimisation approach is chosen to obtain meaningful results at early development stages. This review provides a comparative overview of the methods, numerical tools and optimisation approaches that can be used with respect to the conceptual design of the support structure for Floating offshore wind turbines (FOWT) attempting to detail the limitations preventing the convergence to an optimal floating support structure. This work is intended to be as a reference for any researcher and developer that would like to optimise the support platform for FOWT.
机译:陆上风力发电相比,浮动离岸风力发电是一种很有前途的可再生能源由于更高的风速和更大的合适可用区域。高而陆上风力发电。海上风电的经济可行性技术减少更大的深度和水距离岸边。固定的海外相比更有竞争力结构超过一定水深,但仍然是伟大的多样性和没有明确的设计收敛性。在初步浮动支撑结构阶段的设计过程仍然是巨大的个人经历和重要性,经常感性。优化方法是选择获得在早期发展阶段有意义的结果。本文提供了一个比较的概述方法,数值工具和优化方法,可以使用的支撑结构的概念设计浮动海上风力涡轮机(FOWT)尝试对细节的限制阻碍了收敛到最优的浮动的支持结构。任何研究人员和开发人员参考要优化支持平台

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