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首页> 外文期刊>Advances in space research >A new ocean mean dynamic topography model, derived from a combination of gravity, altimetry and drifter velocity data
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A new ocean mean dynamic topography model, derived from a combination of gravity, altimetry and drifter velocity data

机译:一种新的海洋意味着动态地形模型,源于重力,高度偏移和漂移速度数据的组合

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We present a new mean dynamic ocean topography product based on the improved geoid model, derived in the Optimal Geoid for Modelling Ocean Circulation (OGMOC) project supported by the European Space Agency. This geoid model is based on the Gravity Recovery and Climate Experiment (GRACE) and the Gravity Field and Steady-State Ocean Circulation Explorer (GOCE) satellite missions combined with the newer DTU15GRA altimetric surface gravity and it was optimized to eliminate artificial features common for other geoid models such as striations and orange skin. Subsequently, the model has been augmented using the EIGEN-6C4 coefficients to harmonic degree 2160. The new geodetic mean dynamic ocean topography model DTU17MDT has been derived using this geoid model and the DTU15MSS mean sea surface, with the quasi-gaussian filter optimized to best fit velocities of oceanographic drifting buoys. The new model improves the resolution of important details of the ocean circulation. Finally, the drifter data were integrated into the model to refine its spatial resolution. The new topography product DTU17cMDT, combining the wealth of information from satellite gravity and altimetry and drifters, is rich with more features of the ocean surface circulation. In particular, as shown in the case of the Gulf Stream off the east coast of Florida, DTU17cMDT improves description of the western boundary currents.
机译:我们介绍了一种基于改进的大猩猩模型的新的平均动态海洋地形产品,源于欧洲航天局支持的海洋循环(OGMOC)项目的最佳大地区。这个大溪地模型基于重力回收和气候实验(Grace)以及重力场和稳态海洋循环探险仪(Goce)卫星任务与新的DTU15Gra合二比度的表面重力,并优化以消除其他常见的人造特征大溪地模型如条纹和橙色皮肤。随后,使用EIGEN-6C4系数来增强模型到谐波度2160.新的大地测量动态海洋地形模型DTU17MDT已经使用这种大型木偶模型和DTU15mss平均海面,并用准高斯滤波器优化到最佳适合海洋漂流浮标的速度。新模式提高了海洋循环的重要细节的解决。最后,将漂移数据集成到模型中以改进其空间分辨率。新的地形产品DTU17CMDT,将来自卫星重力和高级速度和漂流者的丰富的信息相结合,具有较丰富的海洋表面循环的特点。特别是,如佛罗里达州东海岸的海湾溪流所示,DTU17CMDT改善了西部界线的描述。

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