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Combining Argo profiles with a general circulation model in the North Atlantic. Part 2: Realistic transports and improved hydrography, between spring 2002 and spring 2003

机译:将Argo配置文件与北大西洋的一般环流模型结合起来。第2部分:2002年春季至2003年春季之间的现实运输和改进的水文学

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A set of Argo profiles collected in the North Atlantic between May 2002 and April 2003 is combined with a low-resolution general circulation model (GCM) using the adjoint method. Fitting the real hydrographic observations leads to vast improvements in the model circulation., including the sea surface height and the meridional heat transport. We find striking differences in basin-scale transports compared with previous assimilation experiments that use the same GCM and a similar spatial resolution. Based on forward modeling studies, it is argued that these differences are due to different assimilation experiment durations. Over 1 year, the hydrography interpolated with the GCM from Argo profiles better represents the contemporary structures than does a long-term averaged climatology. The GCM dynamics are robust enough to distinguish between contemporary hydrography and climatological hydrography. (c) 2007 Elsevier Ltd. All rights reserved.
机译:使用伴随方法,将2002年5月至2003年4月在北大西洋收集的一组Argo剖面图与低分辨率总环流模型(GCM)结合在一起。拟合真实的水文观测数据可以极大地改善模型循环,包括海面高度和子午线的热传递。与以前使用相同GCM和相似空间分辨率的同化实验相比,我们发现流域尺度上的运输存在显着差异。根据前瞻模型研究,认为这些差异是由于同化实验持续时间不同而引起的。在一年多的时间里,用Argo廓线的GCM插值的水文比长期平均气候学更能代表当代结构。 GCM动态足够强大,可以区分当代水文和气候水文。 (c)2007 Elsevier Ltd.保留所有权利。

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