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The impact of resolution on the adjustment and decadal variability of the Atlantic meridional overturning circulation in a coupled climate model

机译:耦合气候模型中分辨率对大西洋子午俯覆环流调整和年代际变化的影响

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摘要

Variations in the Atlantic meridional overturning circulation (MOC) exert an important influence on climate, particularly on decadal time scales. Simulation of the MOC in coupled climate models is compromised, to a degree that is unknown, by their lack of fidelity in resolving some of the key processes involved. There is an overarching need to increase the resolution and fidelity of climate models, but also to assess how increases in resolution influence the simulation of key phenomena such as the MOC. In this study we investigate the impact of significantly increasing the (ocean and atmosphere) resolution of a coupled climate model on the simulation of MOC variability by comparing high and low resolution versions of the same model. In both versions, decadal variability of the MOC is closely linked to density anomalies that propagate from the Labrador Sea southward along the deep western boundary. We demonstrate that the MOC adjustment proceeds more rapidly in the higher resolution model due the increased speed of western boundary waves. However, the response of the Atlantic sea surface temperatures to MOC variations is relatively robust-in pattern if not in magnitude-across the two resolutions. The MOC also excites a coupled ocean-atmosphere response in the tropical Atlantic in both model versions. In the higher resolution model, but not the lower resolution model, there is evidence of a significant response in the extratropical atmosphere over the North Atlantic 6 years after a maximum in the MOC. In both models there is evidence of a weak negative feedback on deep density anomalies in the Labrador Sea, and hence on the MOC (with a time scale of approximately ten years). Our results highlight the need for further work to understand the decadal variability of the MOC and its simulation in climate models.
机译:大西洋子午向翻转环流(MOC)的变化对气候,特别是对年代际尺度有重要影响。耦合气候模型中MOC的模拟由于缺乏解决某些关键过程的保真度而受到损害,在某种程度上是未知的。迫切需要提高气候模型的分辨率和保真度,而且还需要评估分辨率的提高如何影响诸如MOC之类的关键现象的模拟。在这项研究中,我们通过比较同一模型的高分辨率和低分辨率版本,研究了显着提高耦合气候模型(海洋和大气)分辨率对MOC变异性模拟的影响。在这两个版本中,MOC的年代际变化都与从拉布拉多海向南沿深西部边界传播的密度异常密切相关。我们证明,由于西部边界波的速度增加,MOC调整在更高分辨率的模型中进行得更快。但是,横跨两个分辨率,大西洋海表温度对MOC变化的响应相对稳健,即使幅度不大。在这两个模型版本中,MOC还激发了热带大西洋中海洋与大气的耦合响应。在高分辨率模型而非低分辨率模型中,有证据表明,在MOC达到最大值后的6年中,北大西洋的温带大气有明显响应。在这两个模型中,都有证据表明对拉布拉多海的深层密度异常负反馈,因此对MOC的负反馈弱(时间尺度约为10年)。我们的结果强调需要进一步开展工作,以了解MOC的年代际变率及其在气候模型中的模拟。

著录项

  • 来源
    《Climate dynamics 》 |2012年第12期| 3057-3073| 共17页
  • 作者单位

    NCAS-Climate, Department of Meteorology, University of Reading, Earley Gate, PO Box 243, Reading RG6 6BB, UK;

    NCAS-Climate, Department of Meteorology, University of Reading, Earley Gate, PO Box 243, Reading RG6 6BB, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    atlantic; MOC; decadal;

    机译:大西洋;功率;十年;

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