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HYDRODYNAMIC AND AERODYNAMIC LOADS ON THE BEHAVIOUR OF OFFSHORE WIND FARM

机译:海上风电场的水动力和气动载荷

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Renewable energy provides a solution for complex current and future social and environmental problems whereas offshore industry has a large potential for providing renewable energy for future. Currently, offshore technology making use of wind for energy generation purpose becomes a hot spot with highly advanced research and development going on on one side and complex and critical problems present and difficult to solve on the other. This paper is trying to study problems related to the quantification of the hydrodynamic and aerodynamic loads for the design of offshore wind turbine support structures in the offshore wind farm. Both the hydrodynamic and aerodynamic conditions in the offshore site are extremely complex resulting in the difficulty of reasonable determination for the external loads on the wind turbine support structures. However, due to the increasing global demands for future energy solution, the design, analysis and optimization of offshore wind turbine is nevertheless an important issue.The paper first gives an introduction of the offshore wind farm and the complexity of the offshore environment. Wave load is explored with introduction of existing wave load models, comparison of their characteristics while the focus is placed on the nonlinear wave load by means of the Stokes higher order wave theory. Properties of a single regular wave based on methods of linear wave theory and Stokes higher order wave theory are compared which lead to differences in the results of wave load models when these two different methods are used. Wind load model is introduced briefly, followed by the introduction of current methods for determination or approximation of combined wave and wind load and also recommendations for practice. Park effect of the wind load and wave load is also introduced at limited depth in the latter stage as a direction for future research. Conclusion and recommendations based on all the above are therefore given at the last section of the paper.
机译:可再生能源为当前和未来复杂的社会和环境问题提供了解决方案,而海上工业具有为未来提供可再生能源的巨大潜力。当前,利用风能发电的海上技术成为一个热点,一方面进行高度先进的研发,另一方面存在复杂而关键的问题,而另一方面则难以解决。本文试图研究与水动力和空气动力负荷的量化有关的问题,以设计海上风电场中的海上风力涡轮机支撑结构。海上地点的流体动力和空气动力条件都极为复杂,导致难以合理地确定风力涡轮机支撑结构上的外部载荷。然而,由于全球对未来能源解决方案的需求不断增长,海上风力发电机的设计,分析和优化仍然是一个重要的问题。本文首先介绍了海上风力发电场以及海上环境的复杂性。通过介绍现有的波浪荷载模型来探索波浪荷载,比较它们的特性,同时借助Stokes高阶波浪理论将重点放在非线性波浪荷载上。比较了基于线性波理论和Stokes高阶波理论的单个规则波的特性,这导致使用这两种不同方法时,波浪荷载模型的结果有所不同。简要介绍了风荷载模型,然后介绍了用于确定或逼近波浪和风荷载组合的当前方法,以及实践建议。在后期也将在有限深度处引入风荷载和波浪荷载的公园效应,作为未来研究的方向。因此,在本文的最后部分给出了基于以上所有内容的结论和建议。

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