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A global mean ocean circulation estimation using goce gravity models - the DTU12MDT mean dynamic topography model

机译:使用goce重力模型进行全球平均海洋环流估算 - DTU12mDT意味着动态地形模型

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摘要

The Gravity and Ocean Circulation Experiment - GOCE satellite mission measure the Earth gravity field with unprecedented accuracy leading to substantial improvements in the modelling of the ocean circulation and transport. In this study of the performance of GOCE, a newer gravity model have been combined with the DTU10MSS mean sea surface model to construct a global mean dynamic topography model named DTU10MDT. The results of preliminary analyses using preliminary GOCE gravity models clearly demonstrated the potential of GOCE mission. Both the resolution and the estimation of the surface currents have been improved significantly compared to results obtained using pre-GOCE gravity field models. The results of this study show that geostrophic surface currents associated with the mean circulation have been further improved and that currents having speeds down to 5 cm/s have been recovered.
机译:重力和海洋环流实验-GOCE卫星任务以前所未有的精度测量地球重力场,从而大大改善了海洋环流和运输模型。在对GOCE性能的研究中,将较新的重力模型与DTU10MSS平均海面模型相结合,以构建名为DTU10MDT的全球平均动态地形模型。使用初步的GOCE重力模型进行的初步分析结果清楚地证明了GOCE任务的潜力。与使用GOCE之前的重力场模型获得的结果相比,分辨率和表面电流的估计都得到了显着改善。这项研究的结果表明,与平均环流有关的地转表面电流得到了进一步改善,并且速度已降至5 cm / s的电流已经得到恢复。

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