首页> 外文期刊>Journal of Wind Engineering and Industrial Aerodynamics: The Journal of the International Association for Wind Engineering >Experimental investigation of wake flow field and wind comfort characteristics of fractal wind fences
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Experimental investigation of wake flow field and wind comfort characteristics of fractal wind fences

机译:尾流场和分形风围栏风舒适特性的实验研究

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Wind fences are frequently utilized in many areas from agriculture to traffic safety in order to provide a sheltered region behind. The conventional geometry of wind fences are usually porous with circular or rectangular holes. Recent studies on fractal/multiscale grid geometries, i.e. a geometry that consists of smaller scales that are copies of the whole, show interesting results, indicating a potential towards using these types of grids as wind fences. Thus, the main purpose of this study is to investigate the performance of fractal grids as wind fences. For this purpose, four different types of wind fences, three of which have fractal grids, all having the same porosity ratio of 40%, are tested in a wind tunnel. Results of the two-dimensional PIV measurements downstream of each fence are presented. Comparisons of the details of the wake flow structure as well as quantitative comparisons of wind comfort and shelter characteristics up to 10H downstream of fences, where H is the fence height, are also presented. Results show that the jet-wake-wall interactions within the near wake of the fences have a major impact on wind comfort characteristics further downstream. These interactions can potentially be manipulated by custom designing fractal grid fences based on given wind comfort requirements in order to obtain required mean flow and sheltering characteristics.
机译:风栅经常在农业到交通安全的许多地区使用,以便在后面提供遮蔽区域。风围的传统几何形状通常是具有圆形或矩形孔的多孔。最近关于分形/多尺度栅格几何的研究,即由较小的尺度组成的几何形状,它们的整体副本,显示有趣的结果,表明将这些类型的网格用作风栅栏的潜力。因此,本研究的主要目的是研究分形网格作为风栅栏的性能。为此目的,在风隧道中测试四种不同类型的风栅,其中三种具有分形网格,其具有相同的孔隙率为40%。提出了每个围栏下游的二维PIV测量的结果。还介绍了唤醒流动结构细节的比较以及围栏下游的风舒适度和遮蔽特性的定量比较,其中H是围栏高度。结果表明,围栏近尾内的喷射壁壁相互作用在下游进一步对风舒适特性产生重大影响。这些相互作用可以通过定制设计分形网格栅栏来操纵,基于给定的风舒适性要求,以获得所需的平均流量和避难所。

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