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Wind Tunnel Study on Rough and Smooth Surface Turbulent Approach Flow and on Inclined Windscreens

机译:粗糙和光滑表面湍流进风及倾斜挡风玻璃的风洞研究

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The floor of a wind tunnel was provided with isolated roughness elements in the form of small wooden blocks to increase the boundary layer thickness. Since previous experiments were carried out with a smooth floor, the results of the previous research on vertical screens with smooth surface turbulent flow could be compared with the results of the current research on vertical screens with rough surface turbulent flow. It follows that windbreaks are less effective for rough than for smooth turbulent flow, although differences depend on the open area of the windbreak. Furthermore, experiments in the wind tunnel were carried out to compare the effects on wind velocity reduction of vertical and inclined screens. Windscreens were inclined at 30, 45 and 60° with the vertical, either with or against the wind. Except the 30° windward inclined screen with an open area of 49-1% (material C), all other inclined screens were less effective compared with their vertical position, purely through the smaller vertical height of the inclined screens. In general, screens inclined against the wind were more effective than screens inclined with the wind. However, the effectiveness of the windward inclination of the less permeable windbreaks (materials A and B) was more pronounce
机译:风洞的地板上设有孤立的粗糙构件,这些构件以小木块的形式出现,以增加边界层的厚度。由于先前的实验是在光滑的地板上进行的,因此可以将先前对具有光滑表面湍流的垂直筛的研究结果与目前对具有粗糙表面湍流的垂直筛的研究结果进行比较。因此,尽管差异取决于防风林的开放区域,但防风林对粗糙地形的影响不如平滑湍流有效。此外,在风洞中进行了实验,以比较垂直和倾斜屏幕对风速降低的影响。挡风玻璃与风垂直或垂直倾斜30、45和60°。除了具有49-1%的开口面积(材料C)的30°迎风倾斜筛网之外,所有其他倾斜筛网的效率均低于其垂直位置,这完全是因为倾斜筛网的垂直高度较小。通常,与风倾斜的屏幕比对风倾斜的屏幕更有效。但是,透气性较小的防风衣(材料A和B)的迎风倾斜效果更明显

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