首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >An estimate of the impact of stratosphere-to-troposphere transport (STT) on the lower free tropospheric ozone over the Alps using Be-10 and Be-7 measurements - art. no. 8520
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An estimate of the impact of stratosphere-to-troposphere transport (STT) on the lower free tropospheric ozone over the Alps using Be-10 and Be-7 measurements - art. no. 8520

机译:使用Be-10和Be-7测量值估算平流层至对流层运输(STT)对阿尔卑斯山上较低的自由对流层臭氧的影响-艺术。没有。 8520

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1] In the framework of the European project STACCATO, combined measurements of Be-10 and Be-7 were carried out regularly during a full year at the high-altitude stations, Jungfraujoch (JUN), Switzerland and Zugspitze (ZUG), Germany. Inspection of the variability of the ratio Be-10/Be-7 in relation to Be-10, Be-7, and relative humidity (RH) reveals that the ratio is independent from processes that have a clear effect on both radionuclides, such as wet scavenging. High ratio values are generally met under cyclonic or northerly advective conditions, which are the synoptic situations mostly related to stratosphere-to-troposphere transport (STT) events over central Europe, while the 10-day back trajectories indicate a stratospheric source for the majority of the cases within the upper 10% quantile of Be-10/Be-7 ratios. The monthly Be-10/Be-7 ratios show a clear May and June peak at JUN and a much weaker seasonality at ZUG. A simple mixing model is used for an independent estimate of the strength of STT throughout the year based on the Be-7 and Be-10 measurements. In spite of the various uncertainties, the results indicate a seasonal cycle of stratospheric ozone percentage contribution with an early spring maximum (3-11%) and autumn minimum (1-2%) at ZUG, while at JUN, a primary maximum in May and June (6-18%), a secondary maximum in March (4-13%), and a minimum again in autumn (1-4%) are revealed. Although the simple method applied here provides an independent estimate for the impact of STT to the lower troposphere, it nevertheless shows relatively good agreement with Lagrangian model calculations, especially for ZUG. [References: 26
机译:1]在欧洲STACCATO项目的框架内,对Be-10和Be-7的联合测量在一年中定期进行,分别在瑞士的少女峰(JUN)和德国的楚格峰(ZUG)的高空站进行。检查Be-10 / Be-7相对于Be-10,Be-7和相对湿度(RH)的变异性发现,该比率独立于对两种放射性核素都有明显影响的过程,例如湿清除。通常在气旋或北向平流条件下可以满足较高的比值,这是与中欧平流层到对流层运输(STT)事件有关的天气情况,而10天的回溯轨迹表明,大多数在Be-10 / Be-7比率的上限10%内的情况。每月Be-10 / Be-7比率显示5月和6月在6月达到了明显的峰值,而ZUG的季节性则弱得多。一个简单的混合模型可用于根据Be-7和Be-10的测量值独立估算全年的STT强度。尽管存在各种不确定性,但结果表明,平流层臭氧百分比贡献的季节周期为ZUG,春季最高(3-11%),秋季最低(1-2%),而6月,JUN最高,5月为最大。和6月(6-18%),3月(4-13%)次高,秋天(1-4%)最低。尽管此处使用的简单方法提供了对STT对低层对流层影响的独立估计,但与Lagrangian模型计算(尤其是ZUG)相比,显示出相对较好的一致性。 [参考:26

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