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Wintertime atmospheric response to Atlantic multidecadal variability: effect of stratospheric representation and ocean-atmosphere coupling

机译:冬季大气对大西洋多年代际变化的响应:平流层表示和海洋-大气耦合的影响

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The impact of the Atlantic multidecadal variability (AMV) on the wintertime atmosphere circulation is investigated using three different configurations of the Community Atmospheric Model version 5 (CAM5). Realistic SST and sea ice anomalies associated with the AMV in observations are prescribed in CAM5 (low-top model) and WACCM5 (high-top model) to assess the dependence of the results on the representation of the stratosphere. In a third experiment, the role of ocean-atmosphere feedback is investigated by coupling CAM5 to a slab-ocean model in which the AMV forcing is prescribed through oceanic heat flux anomalies. The three experiments give consistent results concerning the response of the NAO in winter, with a negative NAO signal in response to a warming of the North Atlantic ocean. This response is found in early winter when the high-top model is used, and in late winter with the low-top model. With the slab-ocean, the negative NAO response is more persistent in winter and shifted eastward over the continent due to the damping of the atmospheric response over the North Atlantic ocean. Additional experiments suggest that both tropical and extratropical SST anomalies are needed to obtain a significant modulation of the NAO, with small influence of sea ice anomalies. Warm tropical SST anomalies induce a northward shift of the ITCZ and a Rossby-wave response that is reinforced in the mid-latitudes by the extratropical SST anomalies through eddy-mean flow interactions. This modeling study supports that the positive phase of the AMV promotes the negative NAO in winter, while illustrating the impacts of the stratosphere and of the ocean-atmosphere feedbacks in the spatial pattern and timing of this response.
机译:使用社区大气模型第5版(CAM5)的三种不同配置,研究了大西洋多年代际变化(AMV)对冬季大气环流的影响。在CAM5(低顶模型)和WACCM5(高顶模型)中规定了与观测中的AMV相关的现实海温和海冰异常,以评估结果对平流层表示的依赖性。在第三个实验中,通过将CAM5耦合到平板海洋模型来研究海洋-大气反馈的作用,在该模型中,通过海洋热通量异常规定了AMV强迫。这三个实验给出了有关冬季NAO响应的一致结果,其中NAO信号响应北大西洋的变暖而呈现负值。在使用高顶型号的初冬和在低顶型号的冬末发现了这种响应。对于平板海洋而言,NAO的负响应在冬季更加持久,并且由于北大西洋上空大气响应的衰减,在整个大陆上向东移动。其他实验表明,在不影响海冰异常的情况下,热带和温带海温异常都需要获得NAO的显着调制。温暖的热带海表温度异常引起ITCZ向北移动,并在中纬度通过涡旋平均流动相互作用增强了温带海表温度异常的罗斯比波响应。这项建模研究支持AMV的正相在冬季促进NAO负值,同时说明平流层和海洋-大气反馈对这种响应的空间模式和时机的影响。

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