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Experimental and numerical investigations of actuator disks for wind turbines

机译:风力涡轮机执行器盘的实验性和数值研究

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The expenses of a wind turbine modeling in particular a wind farm modeling either numerically or experimentally cause to take the advantages of actuator disks (AD). Porous disks (PD) are used to simulate actuator disks in experiments especially for wake studies. A rotor of a wind turbine replaced by a PD can be modeled efficiently with less cost and process time. For a proper PD selection, some semi‐empirical equations are suggested for a range of solidity of 0.2‐0.6. These equations came from a number of tests. The PDs with different dimensions and solidity values were considered for the tests and models. The results of 2D and 3D numerical simulations and the experimental results show that at the solidity of 0.5, the coefficient of performance of a PD reaches approximately 16/27 which is equal to the Betz's limit; the relation between the coefficient of power and the solidity is fitted by a parabolic equation. The average error of the proposed equations for the power coefficient is reported 1.59%. Finally, based on the current results, some semi‐empirical equations are suggested to help the initial PD selection, and then, the cost of further studies may decrease.
机译:特别是风电场模型的风力涡轮机建模的费用在数值或实验上进行了数值或实验导致采取致动器盘(AD)的优点。多孔磁盘(PD)用于模拟实验中的致动器磁盘,特别是唤醒研究。通过PD代替的风力涡轮机的转子可以以较少的成本和处理时间有效地建模。对于适当的PD选择,提出了一些半经验方程,用于0.2-0.6的固定范围。这些等式来自许多测试。考虑具有不同尺寸和稳定性值的PDS进行测试和模型。 2D和3D数值模拟的结果和实验结果表明,在稳定度为0.5时,PD的性能系数达到约16/27,等于BETZ的极限;功率系数与固体之间的关系被抛物线方程装配。报告了1.59%所提出的电力系数方程的平均误差。最后,基于当前结果,建议一些半经验方程来帮助初始PD选择,然后,进一步研究的成本可能会降低。

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