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Numerical simulation of wake interference effects on the downstream wind turbine

机译:尾流干扰对下游风机的数值模拟

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In wind farms, the performance of downstream wind turbines is significantly affected by the upstream turbine wakes. In this study, we focus on the wake interactions of two horizontal-axis wind turbines, and the separation distance has been investigated using a Reynolds-averaged Navier-Stokes (RANS) framework. Three models for two in-line turbines arranged with different separation distances have been established using Full Rotor Modelling (FPM) approach. And the flow field in the wake region were analysed to help explain the wake interference effects. The simulation results show that the wake effects depend on the relative positions of wind turbines to a great extent. The wake lateral width increases by almost 31% (at 1D downstream the second wind turbine) caused by the wake interference effects of the first turbine. Additionally, wake effects of upstream wind turbines are not always negative, and they are beneficial for the wake recovery of the downstream turbines under certain circumstances.
机译:在风电场中,下游风力涡轮机的性能会受到上游涡轮机尾流的明显影响。在这项研究中,我们专注于两个水平轴风力涡轮机的尾流相互作用,并且使用雷诺平均Navier-Stokes(RANS)框架研究了分离距离。使用全转子建模(FPM)方法已建立了两个布置有不同分隔距离的直列式涡轮机的三个模型。并分析了尾流区域的流场,以帮助解释尾流干扰效应。仿真结果表明,尾流效应在很大程度上取决于风力涡轮机的相对位置。由于第一涡轮的尾流干扰效应,尾流横向宽度增加了近31%(在第二风力涡轮机的下游1D)。另外,上游风力涡轮机的尾流效应并不总是负面的,并且它们在某些情况下对于下游涡轮机的尾流恢复是有益的。

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