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Influence of transport and mixing in autumn on stratospheric ozone variability over the Arctic in early winter

机译:秋初运输和混合对北极初冬平流层臭氧变化的影响

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pstrongAbstract./strong Early winter ozone mixing ratios in the Arctic middle stratosphere show an interannual variability of about 10%. We show that ozone variability in early January is caused by dynamical processes during Arctic polar vortex formation in autumn (September to December). Observational data from satellites and ozone sondes are used in conjunction with simulations of the chemistry and transport model ATLAS to examine the relationship between the meridional and vertical origin of air enclosed in the polar vortex and its ozone amount. For this, we use a set of artificial model tracers to deduce the origin of the air masses in the vortex in January in latitude and altitude in September. High vortex mean ozone mixing ratios are correlated with a high fraction of air from low latitudes enclosed in the vortex and a high fraction of air that experienced small net subsidence (in a Lagrangian sense). As a measure for the strength of the Brewer-Dobson circulation and meridional mixing in autumn, we use the Eliassen-Palm flux through the mid-latitude tropopause averaged from September to November. In the lower stratosphere, this quantity correlates well with the origin of air enclosed in the vortex and reasonably well with the ozone amount in early winter./p.
机译:> >摘要。北极中层平流层中的初冬臭氧混合比显示年际变化约为10%。我们显示1月初的臭氧变化是由秋季(9月至12月)北极极涡形成期间的动力学过程引起的。来自卫星和臭氧探空仪的观测数据与化学和运输模型ATLAS的模拟结合使用,以检查极涡中​​封闭的空气的子午和垂直起源与臭氧含量之间的关系。为此,我们使用一组人造模型示踪剂来推论1月在纬度和海拔上的涡旋中空气团的起源。高涡旋平均臭氧混合比与涡旋中低纬度的高比例空气和净沉降小(在拉格朗日意义上)的高比例空气相关。作为衡量秋季Brewer-Dobson循环和子午混合强度的指标,我们使用9月至11月平均通过中纬度对流层顶的Eliassen-Palm通量。在平流层下部,这个数量与涡流中封闭的空气的起源有很好的相关性,而在初冬时与臭氧的数量具有相当好的相关性。

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