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Observations of the Temporal Evolution and Spatial Structure of the Gap Flow in the Wipp Valley on 2 and 3 October 1999

机译:1999年10月2日至3日对Wipp谷隙流的时间演变和空间结构的观测

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The investigation of gap flow in the Wipp Valley (GAP project) is one of the objectives of the Mesoscale Alpine Programme (MAP). The valley runs south-north across the Brenner Pass, from Italy to Austria. The pass is the lowest one of the main Alpine ridge and is therefore a favorable location for a gap flow, which is called foehn. Based on the extensive dataset of MAP, this study gives a detailed analysis of foehn on 2 and 3 October 1999 [intensive observation period 5 (IOP 5)]. The foehn event began as a gap flow that was separated from midlevel winds by a strong temperature inversion during the night of 1-2 October 1999. On the next night (2-3 October) the inversion dissipated, and the gap flow was combined with strong midlevel cross-ridge flow on 3 October 1999. This study shows that the existence of a temperature inversion above the gap flow has a crucial impact on the flow structure. Another emphasis of the study was the investigation of the small-scale flow structure downstream of the gap. Jumplike features and regions with flow reversals, which were interpreted as "rollers" (reversed rotors), could be observed in the Wipp Valley. A jet layer with a wavy structure indicated a gravity wave in the southern part of the valley. In the northern part the flow showed strong asymmetry with wind speeds nearly twice as strong on the eastern side as on the western one.
机译:对威普谷中的间隙流进行调查(GAP项目)是中尺度高山计划(MAP)的目标之一。该山谷从意大利到奥地利,横跨Brenner Pass向南延伸。该通道是阿尔卑斯山脉主要山脊中最低的通道,因此是间隙流的有利位置,被称为foenn。基于广泛的MAP数据集,本研究对1999年10月2日至3日[深入观察期5(IOP 5)]的foehn进行了详细分析。 foehn事件始于1999年10月1-2日夜间,由于强烈的温度反演而与中层风分开的间隙流。第二天晚上(10月2-3日)消散了反演,间隙流与1999年10月3日,中层跨脊强流。这项研究表明,在缝隙流上方存在温度反演对流结构具有至关重要的影响。这项研究的另一个重点是研究间隙下游的小规模流动结构。在Wipp山谷中可以观察到具有逆流的跳跃状特征和区域,它们被解释为“滚子”(反向转子)。波浪状的射流层表明了山谷南部的重力波。在北部,气流表现出强烈的不对称性,东部的风速几乎是西部的两倍。

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