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Physical modeling of complex airflows developing above rural terrains

机译:在农村地形上方发展的复杂气流的物理模型

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The rural atmospheric boundary layer (ABL) flow was reproduced in a wind tunnel at three different simulation length scales to investigate possible effects of the simulation length scale on flow characteristics. Performance of truncated vortex generators developed for part-depth ABL wind-tunnel simulations was tested in rural terrain exposure against the full-size Counihan vortex generators. A procedure to design the ABL developing above rural type terrain has been described. The 1:395 and 1:236 simulations were created as full-depth simulations, i.e., wind characteristics throughout an entire ABL were reproduced in the wind tunnel. The 1:208 simulation was a part-depth simulation, i.e., only a lower 70% of the ABL was experimentally modelled. The projected scaled-up ABL thicknesses are 395, 354, and 416 m full-scale in the 1:395, 1:236, and 1:208 simulations, respectively. Experimental results show similar trends in all three configurations not depending on the simulation length scale factor. This clearly indicates a possibility to physically, in the wind tunnel, reproduce the same rural atmospheric airflows at different simulation length scales.
机译:在风洞中以三种不同的模拟长度尺度复制了农村大气边界层(ABL)流量,以研究模拟长度尺度对流动特性的可能影响。针对部分深度ABL风洞模拟开发的截断涡流发生器的性能已在农村地形暴露下与全尺寸Counihan涡流发生器进行了测试。已经描述了设计在乡村类型地形之上发展的ABL的过程。创建1:395和1:236模拟作为全深度模拟,即在整个ABL中的风特性在风洞中得以再现。 1:208模拟是部分深度模拟,即实验中仅模拟了较低的ABL的70%。在1:395、1:236和1:208模拟中,按比例放大的ABL厚度预计分别为395、354和416 m满量程。实验结果表明,在所有三种配置中,相似的趋势都与模拟长度比例因子无关。这清楚地表明了在风洞中物理上以不同的模拟长度尺度再现相同的农村大气气流的可能性。

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