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Experimental investigation of vertical-axis wind-turbine wakes in boundary layer flow

机译:边界层流中垂直轴风力机尾流的实验研究

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In this experiment, a small scale vertical-axis wind-turbine (VAWT) is immersed in a boundary-layer in a wind tunnel and stereo particle image velocimetry is employed to quantify the 3D characteristics of the wake The measurements show that the wake is strongest behind the sector of the rotor which turns into the wind Two counter-rotating vortex pairs in the wake induce crosswind motion which reintroduces streamwise momentum into the wake. Terms of the mean kinetic energy budget are computed and demonstrate that this crosswind flow has a significant influence on the redistribution of momentum in the wake A similar analysis of the turbulence kinetic energy budget identifies shearing at the boundary of the wake as the primary contributor to the production of turbulence. An analytical model is developed in order to obtain a theoretical basis from which to understand how the aerodynamic behavior of VAWTs induces crosswind motion consistent with the production of counter-rotating vortex pairs (c) 2017 Elsevier Ltd. All rights reserved.
机译:在此实验中,将小型垂直轴风力涡轮机(VAWT)浸入风洞的边界层中,并使用立体粒子图像测速仪来量化尾流的3D特性。测量结果表明,尾流最强在转子的扇形后方成为风,尾流中有两个反向旋转的涡流对会引起侧风运动,从而将流向动量重新引入尾流。计算了平均动能收支的项,并证明了这种侧风气流对尾流动量的重新分布有重大影响。湍流动能收支的类似分析确定,在尾流边界处的剪切作用是尾流的主要贡献者。产生湍流。开发分析模型是为了获得理论基础,以便从中了解VAWT的空气动力学行为如何诱发与逆转涡流对产生的侧风运动(c)2017 Elsevier Ltd.保留所有权利。

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