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Advancement of an analytical double-Gaussian full wind turbine wake model

机译:分析双高斯全风力涡轮机唤醒模型的进步

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A recently proposed analytical wake model for a horizontal axis utility scale wind turbine is revisited, and revised and improved. The model is based upon conservation of momentum in the context of actuator disc theory, and the assumption of a distribution of the double-Gaussian type for the velocity deficit in the wake. The model is developed and improved and reveals characteristics of the wind turbine wake velocity deficit for the full wake, including the near-wake to within close proximity of the wind turbine rotor. Full 2-dimensional model fitting to lidar wake measurement data obtained from a 5 MW utility scale wind turbine is carried out for the full range of inflow wind velocities of primary interest. Such a full wind turbine wake model has the potential to facilitate analytic calculations within the wind turbine wake region, and the potential to improve understanding of wind turbine aerodynamics.(c) 2021 Elsevier Ltd. All rights reserved.
机译:重新讨论了最近提出的水平轴实用尺度风力涡轮机的分析唤醒模型,并修改和改进。 该模型基于致动器盘理论的上下文中的动量守恒,以及假设唤醒中的速度缺陷的双高斯类型的分布。 该模型是开发和改进的,并揭示了全唤醒的风力涡轮机唤醒速度赤字的特点,包括近醒来的风力涡轮机转子紧邻近距离。 为LIDAR Wake测量数据提供从5 MW公用事业尺度风力涡轮机获得的全部二维模型,用于主要兴趣的全系列流入风速。 这种全风力涡轮机唤醒模型有可能促进风力涡轮机唤醒区域内的分析计算,以及提高对风力涡轮机空气动力学的理解的潜力。(c)2021 elestvier有限公司保留所有权利。

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