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Mechanisms of the atmospheric response to North Atlantic multidecadal variability: a model study

机译:大气对北大西洋多年代际变化的响应机制:模型研究

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摘要

The atmospheric circulation response to decadal fluctuations of the Atlantic meridional overturning circulation (MOC) in the IPSL climate model is investigated using the associated sea surface temperature signature. A SST anomaly is prescribed in sensitivity experiments with the atmospheric component of the IPSL model coupled to a slab ocean. The prescribed SST anomaly in the North Atlantic is the surface signature of the MOC influence on the atmosphere detected in the coupled simulation. It follows a maximum of the MOC by a few years and resembles the model Atlantic multidecadal oscillation. It is mainly characterized by a warming of the North Atlantic south of Iceland, and a cooling of the Nordic Seas. There are substantial seasonal variations in the geopotential height response to the prescribed SST anomaly, with an East Atlantic Pattern-like response in summer and a North Atlantic oscillation-like signal in winter. In summer, the response of the atmosphere is global in scale, resembling the climatic impact detected in the coupled simulation, albeit with a weaker amplitude. The zonally asymmetric or eddy part of the response is characterized by a trough over warm SST associated with changes in the stationary waves. A diagnostic analysis with daily data emphasizes the role of transient-eddy forcing in shaping and maintaining the equilibrium response. We show that in response to an intensified MOC, the North Atlantic storm tracks are enhanced and shifted northward during summer, consistent with a strengthening of the westerlies. However the anomalous response is weak, which suggests a statistically significant but rather modest influence of the extra-tropical SST on the atmosphere. The winter response to the MOC-induced North Atlantic warming is an intensification of the subtropical jet and a southward shift of the Atlantic storm track activity, resulting in an equatorward shift of the polar jet. Although the SST anomaly is only prescribed in the Atlantic ocean, significant impacts are found globally, indicating that the Atlantic ocean can drive a large scale atmospheric variability at decadal timescales. The atmospheric response is highly non-linear in both seasons and is consistent with the strong interaction between transient eddies and the mean flow. This study emphasizes that decadal fluctuations of the MOC can affect the storm tracks in both seasons and lead to weak but significant dynamical changes in the atmosphere.
机译:使用相关的海面温度特征,研究了IPSL气候模式中大气环流对大西洋经向翻转环流(MOC)年代际波动的响应。在敏感性实验中规定了SST异常,将IPSL模型的大气成分耦合到板状海洋。北大西洋规定的SST异常是MOC对耦合模拟中检测到的大气影响的表面特征。它遵循最大的MOC数年,类似于大西洋多年代际振荡模型。它的主要特征是冰岛南部的北大西洋变暖和北欧海变冷。对规定的SST异常,地势高度响应存在很大的季节性变化,夏季为类似东大西洋模式的响应,冬季为北大西洋振荡的信号。在夏季,大气的响应是全球性的,类似于耦合模拟中检测到的气候影响,尽管幅度较小。响应的区域性不对称或涡流部分的特征是暖波SST的波谷与固定波的变化有关。每日数据的诊断分析强调了瞬态涡流强迫在塑造和维持平衡反应中的作用。我们表明,由于MOC的增强,北大西洋风暴路径在夏季增强并向北移动,这与西风的加强一致。但是,异常响应较弱,这表明温带热带气旋对大气的统计意义重大,但影响较小。 MOC引起的北大西洋变暖的冬季响应是亚热带急流的加剧和大西洋风暴路径活动的南移,导致极地急流向赤道移动。尽管仅在大西洋中规定了SST异常,但在全球范围内发现了重大影响,这表明大西洋可以在十年尺度上驱动大规模的大气变化。在两个季节中,大气响应都是高度非线性的,并且与瞬态涡流和平均流量之间的强相互作用是一致的。这项研究强调,MOC的年代际波动会影响两个季节的风暴轨迹,并导致大气中微弱但重要的动力变化。

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  • 来源
    《Climate dynamics》 |2011年第8期|p.1255-1276|共22页
  • 作者单位

    LOCEAN/IPSL, Universite Pierre et Marie Curie-Paris 6,case 100, 4 Place Jussieu, 75252 Paris Cedex 05, France,GFDL/NOAA, AOS Program, Princeton University,201 Forrestal Road, Princeton, NJ 08540, USA;

    rnLOCEAN/IPSL, Universite Pierre et Marie Curie-Paris 6,case 100, 4 Place Jussieu, 75252 Paris Cedex 05, France;

    rnLMD/IPSL, Universite Pierre et Marie Curie-Paris 6,case 99, 4 Place Jussieu, 75252 Paris Cedex 05, France;

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