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Application and extension of the TOPSIS method for the assessment of floating offshore wind turbine support structures

机译:TOPSIS方法在浮动海上风机支撑结构评估中的应用与扩展

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摘要

The offshore wind industry is shifting its focus towards deeper water sites, more suited to floating rather than bottom fixed support structures. Floating support structures currently used for oil and gas platforms provide a starting point for the floating wind industry; however, the selection of an optimum structure is not trivial with several unique factors that contribute to its complexity. In this work programme, a methodology to rapidly assess several concepts for wind turbine floating support structures is proposed. Using the multi-criteria decision-making method, TOPSIS, configurations are rated for a range of attributes. In addition, two complementary methodologies have been developed that extend the TOPSIS capability by including an estimated impact of the uncertainties associated with each of the selected criteria, on the final choice of an optimum support structure. This methodology represents a robust yet flexible design tool to complement the early conceptual design process that is able to rapidly investigate a broad design space and narrow down the number of potential options suitable for floating wind turbines.
机译:海上风电行业将重点转移到更深的水域,而不是底部固定支撑结构,更适合浮动。当前用于石油和天然气平台的浮动支撑结构为浮动风能产业提供了起点。然而,最佳结构的选择并非易事,有几个独特的因素会导致其复杂性。在该工作计划中,提出了一种快速评估风力涡轮机浮动支撑结构几个概念的方法。使用多准则决策方法TOPSIS,可以为一系列属性评估配置。另外,已经开发了两种互补的方法,通过包括与每个选定标准相关的不确定性的估计影响,对最佳支持结构的最终选择,扩展了TOPSIS功能。这种方法论是一种强大而灵活的设计工具,可以补充早期的概念设计过程,该过程能够快速调查广阔的设计空间并缩小适用于浮动风力涡轮机的潜在选项的数量。

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