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Experimental study of turbulence intensity influence on wind turbine performance and wake recovery in a low-speed wind tunnel

机译:湍流强度对低速风洞中风机性能和尾流恢复影响的实验研究

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Regarding the issue of the unmatched Reynolds number for down-scaled wind turbine tests, an experimental study of a single model wind turbine and an array with two turbines was performed under laminar and turbulent inflow conditions. Turbulent inflow was created using an active grid system installed between the contraction and test-section of the wind tunnel; the maximum turbulence intensity can reach 20%. Velocity fields upstream and in the wake of the turbine were measured using a 2D-PIV system. In the experiments with a single turbine, it was found that the power coefficient was strongly dependent on the inflow turbulence intensity, because turbulence influenced the flow separation in the suction side of the wind turbine blade. This was confirmed by PIV results taken under laminar and turbulent inflow conditions. For the wind turbine array case, the efficiency of both turbines was highly related to the turbulence intensity in the inflow. Furthermore, inflow turbulence intensity also influenced the wake recovery. The power coefficient of the wind turbines was similar to design value under controlled inflow turbulence. In conclusion, despite the unmatched Reynolds number, a realistic flow similar to the field can be reached using turbulent inflow created by an active grid system. (C) 2017 Elsevier Ltd. All rights reserved.
机译:关于缩小规模的风机测试中雷诺数无与伦比的问题,在层流和湍流条件下,对单个模型的风机和具有两个风机的阵列进行了实验研究。使用安装在风洞收缩和测试段之间的主动网格系统产生湍流。最大湍流强度可以达到20%。使用2D-PIV系统测量了涡轮上游和下游的速度场。在单涡轮机的实验中,发现功率系数很大程度上取决于流入的湍流强度,因为湍流影响了风力涡轮机叶片吸力侧的流分离。在层流和湍流流入条件下获得的PIV结果证实了这一点。对于风轮机阵列的情况,两个风轮机的效率都与入流的湍流强度高度相关。此外,入流湍流强度也影响了尾流恢复。在受控的入流湍流下,风力涡轮机的功率系数类似于设计值。总之,尽管雷诺数无与伦比,但使用主动网格系统产生的湍流可以达到与田间相似的实际流量。 (C)2017 Elsevier Ltd.保留所有权利。

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