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Characterization of the unsteady aerodynamic response of a floating offshore wind turbine to surge motion

机译:浮动近海风力涡轮机的不稳定空气动力学响应表征浪涌运动

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The disruptive potential of floating wind turbines has attracted the interest of both the industry and the scientific community. Lacking a rigid foundation, such machines are subject to large displacements whose impact on aerodynamic performance is not yet fully explored. In this work, the unsteady aerodynamic response to harmonic-surge motion of a scaled version of the DTU 10?MW turbine is investigated in detail. The imposed displacements have been chosen representative of typical platform motion. The results of different numerical models are validated against high-fidelity wind tunnel tests specifically focused on the aerodynamics. Also, a linear analytical model relying on the quasi-steady assumption is presented as a theoretical reference. The unsteady responses are shown to be dominated by the first surge harmonic, and a frequency domain characterization, mostly focused on the thrust oscillation, is conducted involving aerodynamic damping and mass parameters. A very good agreement among the codes, the experiments, and the quasi-steady theory has been found, clarifying some literature doubts. A convenient way to describe the unsteady results in a non-dimensional form is proposed, hopefully serving as a reference for future works.
机译:浮动风力涡轮机的破坏性潜力引起了行业和科学界的兴趣。缺乏刚性的基础,这种机器受大型位移,其对空气动力学性能的影响尚未完全探索。在这项工作中,详细研究了对DTU 10的缩放版本的缩放版本的谐波浪涌运动的不稳定空气动力学响应。所施加的位移被选为代表典型平台运动。不同数值模型的结果验证了专门针对空气动力学的高保真风洞测试。此外,依赖于准稳态假设的线性分析模型作为理论参考。不稳定的响应被示出为由第一浪涌谐波的主导,并且涉及空气动力学阻尼和质量参数,进行频域表征,主要集中在推力振荡上。已经发现了代码,实验和准稳态理论的非常良好的一致性,阐明了一些文献怀疑。提出了一种描述非尺寸形式的不稳定结果的方便方法,希望作为未来作品的参考。

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