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Impact of ocean resolution on coupled air-sea fluxes and large-scale climate

机译:海洋分辨率对海-气耦合通量和大规模气候的影响

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摘要

Air-sea fluxes are a crucial component in the energetics of the global climate system. The largest air-sea fluxes occur in regions of high sea surface temperature variability, such as ocean boundary, frontal currents and eddies. In this paper we explore the importance of ocean model resolution to resolve air-sea flux relationships in these areas. We examine the SST-wind stress relationship in high-pass filtered observations and two versions of the Met Office climate model with eddy-permitting and eddy-resolving ocean resolution. Eddy-resolving resolution shows marginal improvement in the relationship over eddy-permitting resolution. However, by focussing on the North Atlantic we show that the eddy-resolving model has significant enhancement of latent heat loss over the North Atlantic Current region, a long-standing model bias. While eddy-resolving resolution does not change the air-sea flux relationship at small scale, the impact on the mean state has important implications for the reliability of future climate projections.
机译:海气通量是全球气候系统能量中至关重要的组成部分。最大的海气通量发生在海面温度变化较大的区域,例如海洋边界,额流和涡流。在本文中,我们探索了海洋模型解析对于解决这些地区的海-气通量关系的重要性。我们在高通滤波观测和两个版本的大都会办公室气候模型(具有允许涡流和分辨涡流的海洋分辨率)中研究了海表温度与风应力的关系。解决涡流的分辨率显示出与允许涡流的分辨率相比,关系略有改善。但是,通过关注北大西洋,我们发现,涡旋分解模型在北大西洋洋流地区具有显着增强的潜热损失,这是一个长期存在的模型偏差。尽管旋涡分辨率不会在小范围内改变海气通量关系,但对平均状态的影响对未来气候预测的可靠性具有重要意义。

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