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Filtering of windborne particles by a natural windbreak

机译:通过自然防风网过滤风中的颗粒

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New measurements of the transport and deposition of artificial heavy particles (glass beads) to a thick 'shelterbelt' of maize (width/height ratio W/H % 1.6) are used to test numerical simulations with a Lagrangian stochastic trajectory model driven by the flow field from a RANS (Reynolds-averaged, Navier-Stokes) wind and turbulence model. We illustrate the ambiguity inherent in applying to such a thick windbreak the pre-existing (Raupach et al. 2001; Atmos. Environ. 35, 3373-3383) 'thin windbreak' theory of particle filtering by vegetation, and show that the present description, while much more laborious, provides a reasonably satisfactory account of what was measured. A sizeable fraction of the particle flux entering the shelterbelt across its upstream face is lifted out of its volume by the mean updraft induced by the deceleration of the flow in the near-upstream and entry region, and these particles thereby escape deposition in the windbreak.
机译:人工重颗粒(玻璃珠)向厚玉米“防护带”(宽/高比W / H%1.6)的传输和沉积的新测量用于测试由流动驱动的拉格朗日随机轨迹模型的数值模拟RANS(雷诺平均,Navier-Stokes)风和湍流模型得到的场。我们举例说明了将预先存在的这样的厚防风带应用于这种厚防风带所固有的歧义性(Raupach等人,2001; Atmos。Environ。35,3373-3383)“细防风带”理论,即通过植被过滤颗粒,并表明了本说明尽管比较费力,但可以对测量的结果提供合理令人满意的解释。跨过上游面进入防护林带的相当大一部分颗粒通量,是由于上游附近和入口区域的气流减速所引起的平均上升气流所引起的,因此这些颗粒逃逸了在防风林中的沉积。

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