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SPECTRA AND LARGE EDDY STRUCTURES IN THE DOUBLE LOG-LAYER OF A HIGH Re WIND TURBINE ARRAY BOUNDARY LAYER

机译:高再燃涡轮机网格边界层双对数层中的大涡结构和大涡结构

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Wind Turbine Array Boundary Layer (WTABL) is a relatively simple, yet useful theoretical conceptualization to study very large wind farms in atmospheric boundary layer (ABL). In the current paper, we perform a high-fidelity LES investigation of a 3 × 3 wind turbine array in a WTABL framework, with a main focus on extending the work beyond the simple analytical model and providing a rigorous fundamental understanding of the dynamic behaviour of length scales, their scaling laws and the anisotropic structure of the energy containing eddies responsible for power generation from the wind turbines. This is accomplished by studying the components of energy and shear-stress spectra in the flow. This knowledge can potentially provide an efficient way to control the wind farm power output as well as serve as a stepping stone to design efficient low order numerical models for predicting farm power and dynamics at reduced computational expense.
机译:风力涡轮机阵列边界层(WTABL)是一种相对简单但有用的理论概念,用于研究大气边界层(ABL)中的大型风电场。在本文中,我们对WTABL框架中的3×3风力涡轮机阵列进行了高保真LES研究,重点是将工作扩展到简单的分析模型之外,并提供了对风力发电机动态行为的严格的基本理解。长度标尺,其标尺定律以及负责风力涡轮机发电的含能涡流的各向异性结构。这是通过研究流中的能谱和切应力谱来实现的。这些知识可能会为控制风电场的功率输出提供有效的方法,并且可以作为垫脚石,以有效的低阶数值模型来预测风电场的功率和动态,并减少计算费用。

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