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Atmospheric Circulation Response to an Instantaneous Doubling of Carbon Dioxide. Part II: Atmospheric Transient Adjustment and Its Dynamics

机译:对二氧化碳瞬时倍增的大气环流响应。第二部分:大气瞬态调节及其动力学

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摘要

The dynamical mechanisms underlying the transient circulation adjustment in the extratropical atmosphere after the instantaneous doubling of carbon dioxide are investigated using the National Center for Atmospheric Research Community Atmosphere Model version 3 coupled to a Slab Ocean Model. It is shown that the transient process during the first few months of integration is important in setting up the extratropical circulation response in equilibrium such as the poleward shift of the tropospheric jet streams. Three phases are found during the transient thermal/dynamical adjustment in the Northern Hemisphere: 1) a radiatively driven easterly anomaly in the subpolar stratosphere, 2) an acceleration of the westerly anomaly in the subpolar stratosphere as a result of anomalous planetary-scale eddy momentum flux convergence, and 3) a “downward migration” of the westerly anomaly from the lower stratosphere to the troposphere, followed by the tropospheric jet shift. Several proposed mechanisms for inducing the poleward shift of the tropospheric jet streams are examined. No significant increase in eddy phase speed is found. The rise in tropopause height appears to lead the tropospheric jet shift but no close relation is observed. The length scale of transient eddies does increase but does not lead the tropospheric jet shift. Finally, the tropospheric jet shift can be captured by changes in the index of refraction and the resulting anomalous eddy propagation in the troposphere.
机译:使用国家大气研究社区大气模型第3版和平板海洋模型相结合,研究了二氧化碳瞬时倍增后,温带大气中瞬态环流调节的动力机制。结果表明,在积分的最初几个月中的瞬变过程对于建立平衡中的温带环流响应(如对流层射流的极移)很重要。在北半球的瞬态热/动力调节过程中,发现了三个阶段:1)在副极平流层中由辐射驱动的东风异常,2)由于行星尺度涡动动量异常,副极平流层中的西风异常加速。通量收敛,以及3)西风异常从低平流层到对流层的“向下迁移”,随后是对流层射流移位。研究了几种引起对流层射流极移的机制。没有发现涡流相速度的显着增加。对流层顶高度的升高似乎导致对流层射流偏移,但未观察到紧密的关系。瞬变涡流的长度尺度确实会增加,但不会导致对流层射流偏移。最后,对流层的射流偏移可以通过折射率的变化和对流层中异常涡流的传播来捕获。

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