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Scale model technology for floating offshore wind turbines

机译:浮动式海上风力发电机的比例模型技术

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摘要

This study illustrates the aerodynamic and mechatronic design of a 1/75 scaled model of the DTU 10 MW wind turbine to perform wind tunnel tests in floating offshore configuration. Due to the strong discrepancy of the Reynolds number between full and model scale (up to 150), a dedicated low-Reynolds airfoil (SD7032) was chosen for the aerodynamic design of the blades, and the final shape was defined based on a dedicated optimisation algorithm which had as target the matching of the scaled thrust force and the first flap-wise bending frequency, as it is thoroughly explained in the study. Furthermore, the mechatronic design is reported in terms of the design choices adopted to get the best target-oriented functionalities to the model (i.e. individual pitch control, bandwidth) and to reduce as much as possible the weights, greatly affecting the aero-elastic scaling. The results gathered during experimental campaigns at Politecnico di Milano wind tunnel, are reported confirming the validity of the design and manufacturing choices.
机译:这项研究说明了DTU 10 MW风力发电机的1/75比例模型的空气动力学和机电设计,可以在海上浮动结构中进行风洞测试。由于雷诺数在满刻度和模型刻度(最大为150)之间存在很大差异,因此选择了专用的低雷诺翼型(SD7032)进行叶片的空气动力学设计,并根据专门的优化定义了最终形状该算法以比例推力和第一个襟翼方向弯曲频率的匹配为目标,在研究中已对此进行了详尽的解释。此外,机电一体化设计是根据为使模型获得最佳目标导向功能(即单个音高控制,带宽)并尽可能减少重量而采用的设计选择而报告的,从而极大地影响了气动弹性缩放。据报道,在米兰理工大学风洞实验活动期间收集的结果证实了设计和制造选择的有效性。

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