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An Experimental Investigation on the Wake Characteristics behind a Novel Twin-Rotor Wind Turbine

机译:新型双转子风力涡轮机后尾部特征的实验研究

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An experimental study was performed to examine the wake characteristics and aeromechanic performance of an innovative twin-rotor wind turbine (TRWT) in comparison with those of a conventional single-rotor wind turbine (SRWT). The comparative study was conducted in a large-scale Aerodynamic/Atmospheric Boundary Layer (AABL) wind tunnel with the TRWT and SRWT model sited in simulated atmospheric boundary layer (ABL) winds under neutral stability conditions. In addition to measuring the power outputs of the TRWT and SRWT models, dynamic wind loads acting on the wind turbine models were also investigated in detail. Furthermore, a high-resolution PIV system was used for detailed wake flow field measurements (free-run and phase-locked) in order to quantify the characteristics of the turbulent turbine wake flows and to quantitatively visualize the transient behavior of the unsteady vortex structures behind the wind turbine models. The detailed flow field measurements are correlated with the dynamic wind loads and power output measurements to elucidate the underlying physics for higher total power generation and better durability of the wind turbines.
机译:与传统的单转子风力涡轮机(SRWT)相比,进行了一种实验研究,以检查创新的双转子风力涡轮机(TRWT)的创新双转子风力涡轮机(TRWT)的唤醒特性和气动性能。比较研究是在大规模进行的气动力/大气边界层(AABL)风洞用模拟大气边界层(ABL)的选址和TRWT模型SRWT中性稳定性的条件下卷绕。除了测量TRWT和SRWT模型的电力输出外,还详细研究了作用在风力涡轮机模型上的动态风力载荷。此外,高分辨率PIV系统用于详细的唤醒流场测量(自由运行和锁相),以便量化湍流涡轮机唤醒流的特性,并定量可视化后面不稳定涡流结构的瞬态行为风力涡轮机模型。详细的流场测量与动态风力负载和功率输出测量相关,以阐明基础物理学,以获得更高的总发电和风力涡轮机的更好耐久性。

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