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INVESTIGATING NOVEL FOUNDATIONS FOR OFFSHORE WINDPOWER GENERATION

机译:研究新型基础以开发海上风电

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摘要

In recent years there has been a worldwide increase in the pressure to develop sources of renewable energy. The UK government is committed to ensuring that ten percent of UK energy consumption will be supplied by renewables by the year 2010. Central to this commitment is the need to develop wind farms particularly in the offshore environment. Moving offshore will allow very large wind turbines capable of supplying 2 MW (first generation) to 5 MW (second generation) of power to be installed in large farms consisting of up to fifty or more turbines. In contrast to typical oil and gas structures the foundation may account for up to forty percent of the projected installed cost. The weight of each structure is very low, so the applied vertical load on the foundation will be small compared to the moment load derived from the wind and waves. Further, it will be necessary to have a single design that can be mass-produced over each site rather than have each foundation individually engineered. In combination these points lead to a very interesting engineering problem where the design of the foundation becomes crucial to the economics of the project. One solution is to use conventional piling. However, at some sites it may prove more economical to use shallow foundations, and, in particular suction installed skirted foundations. It will be necessary to develop an adequate design framework for these novel foundations under the relevant combinations of load so that the optimum structural configuration can be achieved. At Oxford University a program of research on skirted foundations has been underway for the last five years, and much progress has been made on the understanding of this type of foundation under combined loading. This progress has been in both experimental and theoretical areas. This paper explores various structural options that might be used for the wind turbine application. These different options lead to different loading conditions on the foundations. Experiments investigating these different loading conditions are explored. A theoretical approach that describes the experimental results in a way that can be implemented in typical structural analyses programs is outlined. Finally details of a major research program into developing the necessary design guidelines for foundations for offshore wind turbines is described.
机译:近年来,全球范围内开发可再生能源的压力不断增加。英国政府致力于确保到2010年,英国能源消耗的百分之十将由可再生能源提供。这一承诺的核心是需要发展风电场,特别是在海上环境中。向海上移动将使能够提供2兆瓦(第一代)至5兆瓦(第二代)电力的超大型风力涡轮机安装在由多达五十个或更多涡轮机组成的大型农场中。与典型的石油和天然气结构相反,地基可能占预计安装成本的40%。每个结构的重量非常轻,因此与风和波浪产生的力矩载荷相比,在基础上施加的垂直载荷将很小。此外,将需要具有可以在每个站点上批量生产的单个设计,而不是单独设计每个基础。这些观点共同导致了一个非常有趣的工程问题,其中基础的设计对于项目的经济性至关重要。一种解决方案是使用常规打桩。但是,在某些场所,使用浅基础,尤其是吸力安装的裙式基础可能更经济。在载荷的相关组合下,有必要为这些新型基础开发适当的设计框架,以便获得最佳的结构配置。在过去的五年中,牛津大学正在进行关于裙式基础的研究计划,并且在组合荷载下对这种类型的基础的理解已经取得了很大进展。在实验和理论领域都取得了这一进展。本文探讨了可用于风力涡轮机应用的各种结构选择。这些不同的选择导致基础上的不同加载条件。探索了调查这些不同的加载条件的实验。概述了一种理论方法,该方法以可在典型结构分析程序中实施的方式描述了实验结果。最后,描述了主要研究计划的详细信息,该计划旨在为海上风力发电机的地基开发必要的设计指南。

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