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Preliminary Design of a Floating Wind Turbine Support Structure and Relevant System Cost Assessment

机译:浮动式风力涡轮机支撑结构的初步设计及相关系统成本评估

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摘要

This paper describes the preliminary design of a floating support structure for offshore wind turbines that has been developed by ERSE (former CESI RICERCA). It considered the prospects that this kind of structure could hold for exploiting wind resources in the windiest sea areas along the coasts of Italy (Sardinia, Sicily, Apulia). A review of the various types of floating structure that have been devised worldwide for wind turbines has made it possible to single out the floating structure that looks most interesting from the technical and economic standpoint. Specifically, the selected structure is of the Tension Leg Platform (TLP) type. It consists of a nearly fully submerged hexagonal platform, which carries a 6 MW wind turbine and is linked to the sea bottom by 6 ties, which assure stability and limited tilting, even under the worst loads induced by wind and sea. The construction and installation phases for this structure have been analysed, and the most effective and economically viable techniques chosen. With a view for avoiding the use of expensive sea craft, the floating structure has been designed in such a way that it can be towed to its site with the wind turbine already standing on it.rnA preliminary dimensioning of the floating structure has been carried out, along with technical verification of the main structural members. This work has been performed in cooperation with the engineering company TECON, which used, among others, the MOSES computation code by Ultramarine. Attention has also been devoted to the most suitable options for mooring the floating structure to the sea bottom.rnTo assess the behaviour of the floating system under the action of wind and waves, the computational code (BM) has been developed by ERSE. This code takes into account the whole "wind turbine + floating platform" system, represented by a scheme featuring 8 degrees of freedom. Using this code no anomalous or unexpected behaviours were observed. The costs of building and installing this floating system have been calculated, drawing on experience gained with similar offshore structures in the oil and gas fields. The unique conditions of Italy as regards shipyards, harbours, electrical grid layout etc. have been taken into account. Along with estimates of operation and maintenance costs, and annual energy yields, these results have allowed the calculation of the probable unit energy production costs of floating wind farms in deep-water coastal areas of Italy.
机译:本文介绍了由ERSE(以前的CESI RICERCA)开发的用于海上风力涡轮机的浮动支撑结构的初步设计。它考虑了这种结构在意大利沿海(撒丁岛,西西里岛,普利亚)最风大的海域开发风能所具有的前景。对全球范围内为风力涡轮机设计的各种浮动结构的综述,使从技术和经济角度看最有趣的浮动结构成为可能。具体而言,所选结构为张力腿平台(TLP)类型。它由一个几乎完全淹没的六角形平台组成,该平台带有6兆瓦的风力涡轮机,并通过6个系带与海底相连,即使在风和海力引起的最恶劣负载下,也可以确保稳定性和有限的倾斜度。已经对该结构的建造和安装阶段进行了分析,并选择了最有效和经济上可行的技术。为了避免使用昂贵的海上航行器,已经设计了这样的浮动结构,使得其可以在风力涡轮机已经站立在其上的情况下被拖到其现场。已经对浮动结构进行了初步的尺寸设计。 ,以及主要结构构件的技术验证。这项工作是与工程公司TECON合作完成的,该公司除其他外还使用了Ultramarine的MOSES计算代码。为了将浮动结构系泊到海底,人们还致力于最合适的选择。为了评估浮动系统在风浪作用下的行为,ERSE已开发了计算代码(BM)。该代码考虑了整个“风力涡轮机+浮动平台”系统,该系统由具有8个自由度的方案表示。使用此代码,未观察到异常或意外行为。根据在油气田中类似的海上结构所获得的经验,已经计算出了建造和安装该浮动系统的成本。考虑到意大利在船厂,港口,电网布局等方面的独特条件。加上运营和​​维护成本以及年度能源产量的估算,这些结果可以计算出意大利深水沿海地区的浮动风电场的单位能源生产成本。

著录项

  • 来源
    《Wind Engineering》 |2010年第1期|29-50|共22页
  • 作者单位

    ERSE S.p.A. - via Rubattino, 54-20134 Milan (Italy);

    ERSE S.p.A. - via Rubattino, 54-20134 Milan (Italy);

    ERSE S.p.A. - via Rubattino, 54-20134 Milan (Italy);

    ERSE S.p.A. - via Rubattino, 54-20134 Milan (Italy);

  • 收录信息 美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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