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A 6-DOFS HARDWARE-IN-THE-LOOP SYSTEM FOR WIND TUNNEL TESTS OF FLOATING OFFSHORE WIND TURBINES

机译:浮动海上风轮机风洞试验的六自由度循环中硬件系统

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This article presents a hardware-in-the-loop (HIL) methodology developed at Politecnico di Milano (PoliMi) to perform wind tunnel tests on floating offshore wind turbines (FOWTs). The 6-DOFs HIL setup is presented, focusing on the main differences with respect to a previous 2-DOFs system. Aerodynamic, rotor and control related loads, physically reproduced by the wind turbine scale model, must be measured in real-time and integrated with the platform numerical model. These forces contribute to couple wind turbine and floating platform dynamics and their correct reproduction is of fundamental importance for the correct simulation of the floating system behavior. The procedure developed to extract rotor loads from the available measurements is presented, discussing its limitations and the possible uncertainties introduced in the results. Results from verification tests in no-wind conditions are presented and analyzed to identify the main uncertainty sources and quantify their effect on the reproduction of the floating wind turbine response to combined wind and waves.
机译:本文介绍了米兰理工大学(PoliMi)开发的一种硬件在环(HIL)方法,用于对浮动海上风力涡轮机(FOWT)进行风洞测试。介绍了6自由度HIL设置,重点是与以前的2自由度系统的主要区别。由风力涡轮机比例模型物理再现的与空气动力,转子和控制相关的载荷必须实时测量并与平台数值模型集成。这些力有助于风力涡轮机和浮动平台的动力学耦合,它们的正确再现对于正确模拟浮动系统的行为至关重要。介绍了从可用测量值中提取转子负载的程序,并讨论了其局限性以及结果中可能引入的不确定性。呈现并分析了无风条件下验证测试的结果,以识别主要不确定性来源,并量化其对浮动风力涡轮机对风和浪的响应的再现影响。

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