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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Experimental study of aerodynamic loads on ground-mounted solar panel arrays: The panel spacing and inclination angle effect
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Experimental study of aerodynamic loads on ground-mounted solar panel arrays: The panel spacing and inclination angle effect

机译:基于地面太阳能电池板阵列的空气动力载荷的实验研究:面板间距和倾角效应

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摘要

The influence of panel inclination, wind direction, and longitudinal panel spacing on the wind loads of the model of ground-mounted solar panel arrays scaled 1:20 in a wind tunnel was investigated for a Reynolds number of 1.3 x 10(5). The experiments were carried out at the panel inclination of 25 degrees and 45 degrees, dimensionless panel spacing in tandem of 0.5 and 1, and the wind directions of the incoming flow were varied from 0 degrees to 180 degrees at 30 degrees intervals. A constant temperature anemometer was used to measure the velocity and turbulence intensities, and a pressure scanner system measured static pressures. The results indicated that the net pressure coefficients of the solar panels were increased with the panel inclination angle and spacing between solar panels, and the maximum wind loads were obtained on the first windward panel. It was also observed that in terms of maximum uplift and drag, 180 degrees and 0 degrees was found to be the critical wind direction, respectively. In contrast, in terms of overturning moments, 30 degrees and 150 degrees were the critical wind directions.
机译:面板倾斜度,风向和纵板间距对接地太阳能电池板阵列模型的风力负荷的影响,在风洞中进行了1:20,对雷诺数为1.3×10(5)。实验在面板倾斜度为25度和45度,串联的无量纲间隔的倾斜度,并且进入流动的风向在30度的间隔以0度到180度变化。恒温风速器用于测量速度和湍流强度,并且压力扫描仪系统测量静压。结果表明,太阳能电池板的净压力系数随着面板倾斜角度和太阳能电池板之间的间隔而增加,并且在第一挡风板上获得了最大风力载荷。还观察到,在最大隆起和阻力方面,发现180度和0度分别是临界风向。相反,在推翻时刻,30度和150度是临界风向。

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