首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Long-Term Changes in the Northern Midwinter Middle Atmosphere in Relation to the Quasi-Biennial Oscillation
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Long-Term Changes in the Northern Midwinter Middle Atmosphere in Relation to the Quasi-Biennial Oscillation

机译:北中冬季中大气层的长期变化与准两年期振荡相关

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摘要

Long-term changes in the middle atmosphere due to anthropogenic greenhouse gas emissions are examined in relation to the effect of the equatorial Quasi-Biennial Oscillation (QBO) on the northern midwinter circulation. The examinations are based on the Coupled Model Intercomparison Project Phase 5 simulations for 1979-2100 with the Earth-System-Model MPI-ESM-MR that generates the QBO internally. In particular, the three-dimensional residual circulation is used as proxy for the Brewer-Dobson circulation, revealing an increasing downwelling in the center of the polar low over Northern Europe/Siberia (~5% per decade). The changes in northern midwinter temperature, zonal wind, and residual circulation are much stronger during westerly (QBO-W) than easterly (QBO-E) phase of QBO (e.g., for a moderate increase in greenhouse gases, we find maximum decreases in the zonal mean westerly jet at 60°N and 3 hPa of about-14.8 ± 5.4 m/s for QBO-W but only-4.7 ± 5.2 m/s for QBO-E). This is due to a change of the extratropical QBO-W signature toward QBO-E signature while the equatorial QBO remains nearly unchanged (i.e., a change toward disappearance of the so-called Holton-Tan relationship). Similar to the current change from QBO-W to QBO-E signature, the changes during QBO-W include an increase in amplitude and eastward shift in phase of stratospheric stationary Wave 1 at the cost of Wave 2, with decreasing westerlies over North America and increasing downwelling over Siberia. The eastward shift in phase of stationary Wave 1 is related to the associated increase in meridional transport of planetary vorticity.
机译:在北中冬季循环中的赤道准二年两年振荡(QBO)的影响,研究了由于人为温室气体排放引起的中间大气层的长期变化。该检查基于1979-2100的耦合模型离读项目阶段5模拟,其中地球系统模型MPI-ESM-MR在内部产生QBO。特别是,三维剩余循环用作Brewer-Dobson循环的代理,揭示了极性低于北欧/西伯利亚(每十年〜5%)的极性低位越来越多的贫困。北部冬季温度,危险和残留循环的变化在西方(QBO-W)时比QBO的QBO-E)相当强烈(例如,对于温室气体的中等增加,我们发现最大减少ZbO-W的Zonal意味着在60°N和3 HPA的30°N和3 HPA,但对于QBO-E仅-4.7±5.2米/秒)。这是由于赤道QBO患者朝向QBO-E签名的额外QBO-W签名的变化差异几乎不变(即,所谓的Holton-Tan关系失踪的变化)。类似于从QBO-W到QBO-E签名的电流变化,QBO-W期间的变化包括在波2成本的平流层固定波1的阶段增加和向东转移的增加,并减少了北美的Westerlies越来越沉沦于西伯利亚。静止波1的东移相差与行星涡度的子午相相关的相关增加。

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