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Using the Artificial Tracer e90 to Examine Present and Future UTLS Tracer Transport in WACCM

机译:使用人工示踪器E90检查WACCM中的现在和未来的UTL示踪传输

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Large-scale tracer transport in the upper troposphere and lower stratosphere (UTLS) is investigated using simulations of the Whole Atmosphere Community Climate Model (WACCM) over the period 1955-2099. The analyses are based on e90, an artificial passive tracer with constant emissions and atmospheric loss rates. The separate contributions of advection by the residual circulation, eddy mixing, and subgrid convection to total transport are explicitly evaluated. The results highlight distinct large-scale transport regimes in the tropics, characterized by efficient vertical tracer transport, and the extratropics, dominated by isentropic mixing. One novel result is the important role of vertical eddy mixing in the tropical upper troposphere. It is shown that interannual variability in e90 is largely driven by El Nino-Southern Oscillation and the quasi-biennial oscillation. The long-term trends emphasize a strong impact of a rising tropopause with climate change on UTLS dynamics and tracer transport. The analyses directly attribute the e90 trends to changes in the different transport components. Stronger residual circulation in the future leads to increased tracer concentrations in the tropical lower stratosphere. Enhanced eddy mixing increases e90 in the extratropical lowermost stratosphere, linked to an upward shift of wave dissipation tied to the tropopause rise. In the troposphere, reduced concentrations in the future are due to weaker convective transport out of the boundary layer and weaker extratropical isentropic eddy mixing.
机译:利用全大气群落气候模式(WACCM)模拟1955-2099年期间对流层上部和平流层下部(UTLS)的大尺度示踪物输运进行了研究。分析基于e90,这是一种具有恒定排放和大气损失率的人工被动示踪剂。明确评估了残余环流、涡动混合和次网格对流对总输运的单独贡献。结果突出了热带地区明显的大规模输运机制,其特征是有效的垂直示踪输运,以及以等熵混合为主的温带地区。一个新的结果是热带对流层上部垂直涡混合的重要作用。结果表明,e90的年际变化主要由厄尔尼诺南方涛动和准两年振荡驱动。长期趋势强调了对流层顶上升和气候变化对UTLS动力学和示踪剂传输的强烈影响。这些分析直接将e90趋势归因于不同运输组成部分的变化。未来更强的残余环流导致热带平流层下部示踪物浓度增加。增强的涡旋混合增加了温带最低平流层的e90,这与对流层顶上升引起的波耗散向上移动有关。在对流层,未来浓度降低是由于边界层外的对流输送减弱和温带等熵涡混合减弱。

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