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Cold‐air pool evolution in a wide Pyrenean valley

机译:宽的Pyrenean山谷中的冷空气池进化

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摘要

>This study on cold‐air pool formation in the wide Cerdanya Valley in the Pyrenees mountain range was conducted using available observational information from September 2010 to August 2014. Cold‐air pools occur during almost 60% of the nights, mainly during winter. Cold pools develop even under significant synoptic pressure gradients. Additionally, drainage currents transporting air down‐valley occur most of the nights. In particular one representative cold‐air pool event has been analysed in detail by a high‐resolution mesoscale simulation, combined with an analysis of data from both ground‐based stations and satellites. Radiative processes dominate the evolution of cold‐air pools, together with turbulence in the lowest layers, while drainage flows down from the high mountains mainly through the tributary valleys and from the valley sidewall slopes play a key role in bringing air to the pool. Cold pool formation begins approximately 1 hr after sunset, and it extends across most of the valley bottom, with a very strong thermal inversion close to the surface that has a depth of up to 100?m in the lowest parts of the valley. Wind veers down‐valley along the main axis 2–3 hr after sunset and the wind direction is approximately maintained until after sunrise.
机译: >本研究了宽带围岩谷的冷空气池地层比利牛斯山脉使用2010年9月至2014年8月的可用观测信息进行。冷空气游泳池在近60%的夜晚发生,主要是在冬季。冷池即使在显着的舞蹈压力梯度下也会发育。此外,大部分夜晚都发生了运输空气下游的排水电流。特别地,通过高分辨率的Messcale模拟详细分析了一个代表性的冷空气池事件,结合了基于地面站和卫星的数据的分析。辐射过程占据了冷空气池的演变,以及最低层的湍流,而排水主要通过支流山谷和山谷侧壁斜坡从高山流出,在将空气带入游泳池时发挥着关键作用。冷池形成在日落后大约开始1小时,它延伸到大部分谷底,靠近谷谷最低部分的深度高达100Ωm的表面非常强烈的热反转。沿着主轴沿着主轴沿着山谷下游2-3小时,在日出之后大约保持风向。

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