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Analysis of near-surface relative humidity in a wind turbine array boundary layer using an instrumented unmanned aerial system and large-eddy simulation

机译:使用仪器化的无人机系统和大涡模拟分析风机阵列边界层中的近地表相对湿度

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摘要

Simulation and modeling have shown that wind farms have an impact on the near-surface atmospheric boundary layer as turbulent wakes generated by the turbines enhance vertical mixing. While a few observational data sets that focus on near-surface temperature changes exist, these studies lack high spatial resolution and neglect the combined effect of these temperature changes with an altered humidity profile. With a large portion of wind farms hosted within an agricultural context, changes to relative humidity can potentially have secondary impacts, such as to the productivity of crops. The goal of this study is to gather high-resolution in situ field measurements in the wake of a single wind turbine in order to differentially map downstream changes to relative humidity. These measurements, obtained by an instrumented unmanned aerial system, are complemented by numerical experiments conducted using large-eddy simulation. Observations and numerical results are in good general agreement around a single wind turbine and show that downstream relative humidity is differentially altered in all directions, specifically decreased below the turbine hub height. Large-eddy simulation is then used to determine the effect of a large 7x4 turbine array on the relative humidity distribution in compounding wakes. It is found that the region of relative humidity decrease below the turbine hub height and the region of increase above the hub height both intensify, differentially extend in the lateral directions, and move slightly upward with downstream distance.
机译:仿真和建模表明,由于涡轮机产生的湍流尾流增强了垂直混合,风电场对近地表大气边界层产生了影响。虽然存在一些关注近地表温度变化的观测数据集,但这些研究缺乏高空间分辨率,并且忽略了这些温度变化与湿度曲线变化的综合影响。由于大部分风电场都位于农业环境中,因此相对湿度的变化可能会产生次级影响,例如对农作物的生产力。这项研究的目的是在单个风力涡轮机后收集高分辨率的原位现场测量数据,以便将下游的变化差异映射到相对湿度。这些测量值是通过无人驾驶航空仪表系统获得的,并辅以使用大涡模拟进行的数值实验。观测和数值结果在单个风力涡轮机周围总体上一致,表明下游相对湿度在所有方向上都有差异性变化,特别是在涡轮机轮毂高度以下降低。然后使用大涡模拟来确定大型7x4涡轮机阵列对复合尾流中相对湿度分布的影响。已经发现,相对湿度降低的区域在涡轮机轮毂高度以下而增加的区域在轮毂高度上均增强,差异地延伸,并且随着下游距离而略微向上移动。

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