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Interactions Between Downslope Flows and a Developing Cold-Air Pool

机译:下坡流与发展中的冷气池之间的相互作用

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A numerical model has been used to characterize the development of a region of enhanced cooling in an alpine valley with a width of order km, under decoupled stable conditions. The region of enhanced cooling develops largely as a region of relatively dry air which partitions the valley atmosphere dynamics into two volumes, with airflow partially trapped within the valley by a developing elevated inversion. Complex interactions between the region of enhanced cooling and the downslope flows are quantified. The cooling within the region of enhanced cooling and the elevated inversion is almost equally partitioned between radiative and dynamic effects. By the end of the simulation, the different valley atmospheric regions approach a state of thermal equilibrium with one another, though this cannot be said of the valley atmosphere and its external environment.
机译:在解耦的稳定条件下,已经使用数值模型来表征在宽度为km数量级的高山山谷中增强冷却区域的发展。增强冷却的区域主要发展为相对干燥的空气区域,该区域将山谷的空气动力学划分为两个体积,而气流由于不断发展的升高的反转而部分滞留在山谷中。量化了增强冷却区域和下坡流之间的复杂相互作用。增强冷却和高反转率区域内的冷却几乎在辐射效应和动态效应之间平均分配。到模拟结束时,不同的山谷大气区域彼此之间达到热平衡状态,尽管不能说山谷大气及其外部环境。

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