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An investigation of in-field blockage effects in closely spaced lateral wind farm configurations

机译:近距离横向风电场配置中的场内阻塞效应研究

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A method of increasing the performance of wind farms has been established by limiting the lateral separation between neighbouring wind turbines. The close proximity of the wind turbines creates a beneficial in-field blockage effect that results in a core of increased speed that is accelerated through the gap between the turbines. A preceding study indicated that the performance of three wind turbines can be increased by over 10% with tip-to-tip separation of 0.5 diameters (D) compared with the power output of the respective turbines in isolation. A corresponding flow-mapping study has been completed in the current work using a single-normal hot-wire anemometer to characterize the increased flow speed through a narrow lateral gap, leading to the observation of a region of increased speed that occurs between 0D and 2.5D downstream of the gap between laterally spaced wind turbines. The experimental results were confirmed by conducting a series of computational simulations with the generalized unsteady vortex particle discrete vortex method code. The simulations were conducted with three rotors arranged in five different configurations, and the increase in power generated by the multi-rotor configurations closely followed the observed experimental trends. The closely spaced lateral wind turbine configurations may have the ability to increase the annual capacity factor of wind farms while reducing wind farm land use requirements. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:通过限制相邻风力涡轮机之间的横向间隔,已经建立了一种提高风电场性能的方法。风力涡轮机的紧密靠近产生了有益的场内阻塞效应,导致铁心的速度提高,该速度通过涡轮机之间的间隙加速。先前的研究表明,与单独的各个涡轮机的功率输出相比,如果使用0.5直径(D)的尖端到尖端间距,则三个风力涡轮机的性能可以提高10%以上。在当前的工作中,已经完成了相应的流量映射研究,使用单法线热线风速计来表征通过狭窄横向间隙增加的流速,从而观察到出现在0D和2.5之间的增加的速度区域D在横向隔开的风力涡轮机之间的间隙的下游。通过使用广义非稳态涡旋粒子离散涡旋方法代码进行一系列计算仿真,证实了实验结果。使用三个以五种不同配置布置的转子进行了仿真,并且由多转子配置产生的功率增加紧随观察到的实验趋势。紧密间隔的侧向风力涡轮机配置可以具有增加风电场的年容量因子,同时减少风电场土地使用需求的能力。版权所有(c)2014 John Wiley&Sons,Ltd.

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