首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Coupled air-sea interaction patterns and surface heat-flux feedback in the Bay of Biscay
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Coupled air-sea interaction patterns and surface heat-flux feedback in the Bay of Biscay

机译:比斯开湾的海-气相互作用模式和地表热通量反馈

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摘要

The coupled variability of the Sea Surface Temperature (SST) and atmosphere-ocean surface heat fluxes over the Bay of Biscay (Eastern North Atlantic) has been analyzed. Daily surface heat fluxes from different meteorological reanalyses are combined with a high resolution reconstructed satellite SST data set by means of Lagged Maximum Covariance Analysis (MCA). Lagged MCA is applied at different spatial scales. Its results are interpreted within the framework of Hasselmann's stochastic climate model. The surface heat-flux feedback on SST is confirmed to be generally negative. No clear relation is found between the first MCA expansion series and the leading Sea Level Pressure (SLP) patterns. However, a clear relation is found between the second expansion series and the leading SLP Principal Component (PC) when the atmosphere leads the ocean. Spatial patterns of anomalies of the SST and of the SST tendency are found to be related by a 4day lag. The same reconstructed satellite SST and reanalysis heat fluxes are combined to estimate the feedbacks related to the surface heat fluxes. The traditional procedure used to compute the surface heat-flux feedbacks from monthly data is adapted for daily data. High resolution maps of the heat-flux feedback are derived for the annual and seasonal cases for the Bay of Biscay. Feedbacks related to turbulent (latent and sensible heat) fluxes are shown to dominate over the radiative ones. Special attention is paid to small-scale features present in both Lagged Covariance patterns and surface heat-flux feedback estimates.
机译:分析了比斯开湾(东北大西洋)的海面温度(SST)和大气-海洋表面热通量的耦合变化。通过滞后最大协方差分析(MCA),将来自不同气象再分析的每日表面热通量与高分辨率重建的卫星SST数据集结合起来。滞后MCA应用于不同的空间比例。其结果在哈塞尔曼随机气候模型的框架内进行解释。确认SST上的表面热通量反馈通常为负。在第一个MCA扩展系列和领先的海平面压力(SLP)模式之间没有发现明确的关系。但是,当大气层引向海洋时,在第二个扩展系列与领先的SLP主成分(PC)之间发现了明确的关系。发现SST异常的空间格局和SST趋势与4天的滞后时间有关。将相同的重建卫星SST和再分析热通量相结合,以估计与表面热通量有关的反馈。用于从月度数据计算表面热通量反馈的传统过程适用于日间数据。针对比斯开湾的年度和季节性案例,导出了热通量反馈的高分辨率地图。与湍流(潜热和显热)有关的反馈在辐射通量中占主导地位。要特别注意滞后协方差模式和表面热通量反馈估计中都存在的小尺度特征。

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