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首页> 外文期刊>Atmospheric Chemistry and Physics Discussions >The influence of the stratosphere on the tropospheric zonal wind response to CO2 doubling
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The influence of the stratosphere on the tropospheric zonal wind response to CO2 doubling

机译:平流层对二氧化碳倍增的对流层区风反应的影响

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The influence of a CO2 doubling on the stratospheric potential vorticity (PV) is examined in two climate models. Subsequently, the influence of changes in the stratosphere on the tropospheric zonal wind response is investigated, by inverting the stratospheric PV. Radiative effects seem to dominate the stratospheric response to CO2 doubling in the Southern Hemisphere. These lead to a stratospheric PV increase at the edge of the polar vortex, resulting in an increased westerly influence of the stratosphere on the troposphere, increasing the midlatitude tropospheric westerlies in late winter. In the Northern Hemisphere, dynamical effects are also important. Both models show a reduced polar PV and an enhanced midlatitude PV in the Northern Hemisphere winter stratosphere. These PV changes are likely related to an enhanced wave forcing of the winter stratosphere, as measured by an increase in the 100 hPa eddy heat flux, and result in a reduced westerly influence of the stratosphere on the high latitude tropospheric winds. In one model, the high latitude PV decreases are, however, restricted to higher altitudes, and the tropospheric response due to the stratospheric changes is dominated by an increased westerly influence in the midlatitudes, related to the increase in midlatitude PV in the lower stratosphere. The tropospheric response in zonal wind due to the stratospheric PV changes is of the order of 0.5 to 1 m s1. The total tropospheric response has a somewhat different spatial structure, but is of similar magnitude. This indicates that the stratospheric influence is of importance in modifying the tropospheric zonal wind response to CO2 doubling.
机译:在两个气候模型中检查了二氧化碳加倍在平流层势涡度(PV)上的影响。随后,通过反转平流层PV来研究对流层的变化对流层Zonal风响应的影响。辐射效应似乎主导了南半球二氧化碳的平流层反应。这些导致极地涡旋边缘的平流层PV增加,导致对流层对流层对流层对流层的影响力增加,增加了深层冬季的中间人拓斯特利斯。在北半球,动态效果也很重要。两种模型都显示出极地降低的极地光伏和北半球冬季平流层中增强的中间光谱。这些光伏变化可能与冬季平流层的增强波强制有关,通过100 HPA涡热通量的增加来测量,并导致在高纬度的对流层风中减少了平流层的西风影响。在一种模型中,高纬度PV降低,然而,仅限于较高的高度,并且由于平流层的变化导致的对流层反应是由中亚径的增加的影响,与较低平流层中的中间光谱的增加有关。由于平流层PV变化引起的Zonal风中的对流层响应是0.5至1M S1的。总对流层反应具有稍微不同的空间结构,但具有相似的幅度。这表明平流层的影响在改变对二氧化碳加倍的转移层的Zonal风响应方面是重要的。

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