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The impact of embedded valleys on daytime pollution transport over a mountain range

机译:埋谷对山脉日间污染物迁移的影响

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Idealized large-eddy simulations were performed to investigate the impact of different mountain geometries on daytime pollution transport by thermally driven winds. The main objective was to determine interactions between plain-to-mountain and slope wind systems, and their influence on the pollution distribution over complex terrain. For this purpose, tracer analyses were conducted over a quasi-two-dimensional mountain range with embedded valleys bordered by ridges with different crest heights and a flat foreland in cross-mountain direction. The valley depth was varied systematically. It was found that different flow regimes develop dependent on the valley floor height. In the case of elevated valley floors, the plain-to-mountain wind descends into the potentially warmer valley and replaces the opposing upslope wind. This superimposed plain-to-mountain wind increases the pollution transport towards the main ridge by an additional 20% compared to the regime with a deep valley. Due to mountain and advective venting, the vertical exchange is 3.6 times higher over complex terrain than over a flat plain. However, the calculated vertical exchange is strongly sensitive to the definition of the convective boundary layer height. In summary, the impact of the terrain geometry on the mechanisms of pollution transport confirms the necessity to account for topographic effects in future boundary layer parameterization schemes.
机译:进行了理想化的大涡模拟,以研究不同山区的几何形状对热驱动风对日间污染物传输的影响。主要目的是确定平原到山地和斜坡风系统之间的相互作用,以及它们对复杂地形上污染分布的影响。为此,在准二维山脉上进行了示踪剂分析,其中嵌入的谷地被具有不同波峰高度的山脊和跨山方向平坦的前陆所包围。山谷深度有系统地变化。已经发现,不同的流动方式取决于谷底高度。在高低谷底的情况下,从平原到山地的风下降到可能更温暖的山谷中,并替代了相反的上坡风。与深谷地区相比,这种叠加的平原到山上的风使向主山脊的污染传输增加了20%。由于山区和对流通风,在复杂地形上的垂直交换比在平坦平原上的垂直交换高3.6倍。但是,计算出的垂直交换对对流边界层高度的定义非常敏感。总之,地形几何学对污染迁移机制的影响证实了在未来的边界层参数化方案中考虑地形影响的必要性。

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