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NUMERICAL AND EXPERIMENTAL WIND TUNNEL ANALYSIS OF AERODYNAMIC EFFECTS ON A SEMI-SUBMERSIBLE FLOATING WIND TURBINE RESPONSE

机译:半潜式浮动风力涡轮机响应的空气动力学效应的数值和实验风隧道分析

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This paper presents the main results of an experimental campaign about the DeepCwind semi-submersible floating offshore wind turbine (FOWT), that was carried out at Politecnico di Milano wind tunnel, adopting a hybrid hardware-in-the-loop (HIL) testing technique. Differently from previous works by the authors, this further analysis herein reported, is specifically focused on evaluating the effects of aerodynamic loads on the FOWT platform motions. In order to reproduce the FOWT response to combined wind and waves in a wind tunnel, exploiting the high-quality flow, a HIL system was used. The aerodynamic and rotor loads were reproduced by means of a wind turbine scale model operating inside the wind tunnel and were combined with numerically generated wave loads for real-time integration of the FOWT rigid-body motion equations. The resulting platform motions were imposed to the wind turbine scale model by a hydraulic actuation system. A series of HIL tests was performed to assess the rotor loads effect on the FOWT response. Free-decay tests in still water under laminar un-sheared wind were carried out to evaluate how the aerodynamic forcefield modifies the platform modes frequency and damping. Irregular wave tests for different steady winds were performed to investigate the dependency of platform motion from the wind turbine operating conditions. A FAST v8 model of the studied floating system was developed to support the analysis and numerical simulations were performed to reproduce environmental conditions equivalent to those of the experimental tests. The FAST model prediction capability is discussed against HIL wind tunnel tests results.
机译:本文介绍了关于Deepcwind半潜水浮动近海风力涡轮机(家禽)的实验活动的主要结果,该战略在PoliteCnico di Milano风隧道中进行,采用混合硬件in-in-in-Loop(HIL)测试技术。不同地,来自先前作者的作品,本文报道了本文的进一步分析,专门针对评估空气动力载荷对家禽平台运动的影响。为了在风洞中复制到混合风的响应,利用高质量的流量,使用HIL系统。通过在风隧道内部操作的风力涡轮机尺度模型再现空气动力学和转子载荷,并与数值产生的波载合并,用于实时整合FOWT刚体运动方程。通过液压致动系统对所产生的平台运动施加到风力涡轮机尺度模型。进行了一系列HIL测试以评估转子负载对家禽响应的影响。在层状未剪切风下的静止水中的自由衰减测试进行了评估空气动力场的方式如何改变平台模式频率和阻尼。进行不同稳态风的不规则波试验以研究平台运动从风力涡轮机操作条件的依赖性。开发了一种快速V8模型的研究浮动系统以支持分析,并进行数值模拟,以再现与实验测试的环境条件相当。对Hil风洞测试结果讨论了快速模型预测能力。

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