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Comparisons of the dynamical characteristics of a semi-submersible floating offshore wind turbine based on two different blade concepts

机译:基于两种不同叶片概念的半潜式浮动海上风力发电机的动力特性比较

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摘要

Scaled model tests are important for the development and validation of floating offshore wind turbines. However, it has been found that Reynolds number dissimilitude between scales deteriorates the aerodynamic performance of floating offshore wind turbines when using model test investigation methodologies. To overcome this challenge, a semi-submersible floating offshore wind turbine model test with two different solutions, namely a geometrically matched blade model and a performance-matched blade model, was conducted in a wind/wave basin. Subsequently, a series of comparisons of the dynamical characteristics of these two models were made to clarify the respective validity of the two models and provide references for future floating offshore wind turbine model optimization. It is found that both model methods are capable of reflecting the essential dynamical characteristics but there are some differences in system eigenfrequencies and response amplitudes. Compared with the geometrically matched blade model, the performance-matched blade model has enhanced aerodynamic performance. Nevertheless, the overweight blades within the performance-matched blade model yields inevitable discrepancies compared with the original design.
机译:比例模型测试对于浮动海上风力涡轮机的开发和验证非常重要。然而,已经发现,当使用模型试验研究方法时,秤之间的雷诺数不等式会恶化浮式海上风力涡轮机的空气动力性能。为了克服这一挑战,在风/浪盆地中进行了具有两种不同解决方案的半潜式浮动海上风力涡轮机模型测试,即几何匹配的叶片模型和性能匹配的叶片模型。随后,对这两个模型的动力特性进行了一系列比较,以阐明这两个模型各自的有效性,并为将来的海上浮式风力涡轮机模型优化提供参考。发现这两种模型方法都能够反映基本的动力学特性,但是系统本征频率和响应幅度存在一些差异。与几何匹配的叶片模型相比,性能匹配的叶片模型增强了空气动力学性能。但是,与原始设计相比,性能匹配的叶片模型中的超重叶片会产生不可避免的差异。

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