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Altimeter-Based Estimates of Eddy Variability and Eddy Transports in the Subpolar North Atlantic

机译:基于高度计的北极亚极涡变率和涡输运估计。

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摘要

Geostrophic surface velocity anomalies, inferred from the tandem Jason-1-TOPEX/Poseidon (JTP) altimeter mission, are used to analyze space-time variations of eddy kinetic energy (EKE), eddy momentum, and heat transports in the subpolar North Atlantic. The geostrophic currents are estimated using the "parallel-track approach " with a 10 km along-track resolution. The analysis covers the entire three-year period of the tandem mission (109 repeat cycles) from September 2002 to September 2005. In this paper, we used the three-year record of geostrophic surface velocities available from the JTP tandem mission to estimate eddy transport processes in the subpolar North Atlantic and interpret them in combination with similar results available from a high-resolution numerical simulation of the North Atlantic with a 1/12° horizontal resolution for a 25-year period. Due to the sampling characteristics of the JTP tandem mission, only transports of large-scale eddies can be observed. Moreover, the time series are too short to get statistically stable estimates of eddy processes. Nevertheless, distinct estimates of spatially varying eddy processes can be diagnosed from the novel data set, especially when interpreted in combination with the longer model results. Results suggest that eddy forces accelerate the mean flow over large fractions of the subpolar North Atlantic. There is valuable information present in the JTP velocity time series that contribute to an enhanced understanding of eddy dynamics and the representation of eddy heat and momentum transports in numerical models.
机译:从串联Jason-1-TOPEX /波塞冬(JTP)高度计任务推论得出的地转表面速度异常被用于分析北极亚极涡旋动能(EKE),涡旋动量和热传输的时空变化。使用“平行轨道法”以10 km的轨道分辨率估算地转流。该分析涵盖了从2002年9月到2005年9月的整个三年的串联任务(109个重复周期)。在本文中,我们使用了JTP串联任务的三年地转表面速度记录来估算涡流传输并在25年的时间内将水平分辨率为1/12°的北大西洋高分辨率数值模拟获得的相似结果与类似结果结合起来,对它们进行解释。由于JTP串联任务的采样特性,只能观察到大型涡流的传输。此外,时间序列太短,无法获得涡流过程的统计稳定估计。但是,可以从新数据集中诊断出空间变化的涡流过程的不同估计,尤其是与更长的模型结果结合解释时。结果表明,涡流力加速了北极亚极大部分地区的平均流量。 JTP速度时间序列中存在有价值的信息,这些信息有助于增进对涡旋动力学的理解,并有助于在数值模型中表示涡流的热量和动量。

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