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Surface-to-mountaintop transport characterised by radon observations at the Jungfraujoch

机译:表面到山顶传输,其特征在于jungfraujoch的氡观察

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Atmospheric composition measurements at Jungfraujoch are affected intermittently by boundary-layer air which is brought to the station by processes including thermally driven (anabatic) mountain winds. Using observations of radon-222, and a new objective analysis method, we quantify the land-surface influence at Jungfraujoch hour by hour and detect the presence of anabatic winds on a daily basis. During 2010–2011, anabatic winds occurred on 40% of days, but only from April to September. Anabatic wind days were associated with warmer air temperatures over a large fraction of Europe and with a shift in air-mass properties, even when comparing days with a similar mean radon concentration. Excluding days with anabatic winds, however, did not lead to a better definition of the unperturbed aerosol background than a definition based on radon alone. This implies that a radon threshold reliably excludes local influences from both anabatic and non-anabatic vertical-transport processes.
机译:Jungfraujoch的大气成分测量受到边界层空气间歇性的影响,边界层空气通过包括热驱动(易于矛盾)山风的工艺带到该站。使用氡-222的观测和新的客观分析方法,我们将Jungfraujoch小时的陆地影响量为单位,并每天检测肛交风的存在。在2010 - 2011年期间,互动风在40%的日子里发生,但只有4月到9月。互动风日与大部分欧洲的温暖空气温度相关,并且即使在使用类似平均氡浓度的日期比较天数,也具有在空气质量特性的偏移。然而,不包括互动风的日子并没有导致未受干燥的气溶胶背景的更好定义,而不是仅基于氡的定义。这意味着氡阈值可靠地排除了局面和非互动垂直传输过程的局部影响。

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