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Simultaneous assimilation of surface drifter data, satellite and in situ observations for improved estimates of meso-scale variability in the Kuroshio Extension Region

机译:同时吸收地面漂移数据,卫星观测和原位观测,以改善黑潮扩展区中尺度变化的估计

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摘要

In order to better estimate meso-scale variabilities in the energetic Kuroshio Extension (KE) region, simultaneous assimilation of drifter-derived velocity data, together with satellite and in situ hydrographic data, is attempted by using a high-resolution 4-dimensional variational data assimilation (4D-VAR) system. Our experimental results, both with and without assimilation of drifter data (Exp. Drf and Exp. Ref, respectively) for the period during Aug–Oct 2005, show that the reproduced fields in Exp. Drf better reflect the observed meso-scale features such as the KE meandering jet and associated eddies. The adjoint sensitivity analysis indicates that our 4D-VAR system has the ability to provide a more realistic timeseries of the meandering jet structures that play a key role in the intergyre exchange between the subtropical and subarctic gyres in the North Pacific. In addition, the observed information from the surface drifters works to improve the subsurface structure. These results illustrate the advantage of our 4D-VAR simultaneous assimilation with the addition of drifter-derived surface velocity information.
机译:为了更好地估计高能黑潮扩展(KE)区域的中尺度变化,尝试使用高分辨率的4维变分数据,同时吸收流浪者派生的速度数据以及卫星和原位水文数据同化(4D-VAR)系统。我们的实验结果,无论是否吸收2005年8月至10月期间的漂移​​数据(分别为Exp。Drf和Exp。Ref),都表明Exp。中的复制场。 Drf更好地反映了观测到的中尺度特征,例如KE曲流射流和相关涡流。伴随灵敏度分析表明,我们的4D-VAR系统能够提供更逼真的曲折喷射结构时间序列,这些结构在北太平洋副热带和副北极涡旋之间的旋回交换中起着关键作用。此外,从地面漂流器观察到的信息有助于改善地下结构。这些结果说明了我们的4D-VAR同时同化的优势,并增加了基于漂移的表面速度信息。

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