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Consistency of Geoid Models, Radar Altimetry, and Hydrodynamic Modelling in the North Sea

机译:北海大地水准面模型,雷达测高和水动力模型的一致性

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摘要

Radar altimetry, when corrected for tides, atmospheric forcing of the sea surface, and the effects of density variations and mean and time-variable currents, provides an along-track realization of the marine geoid. In this study we investigate whether and how such an 'altimetric-hydrodynamic' geoid over the North Sea can serve for validating satellite-gravimetric geoids. Our results indicate that, using ERS-2 and ENVISAT along-track altimetry and water levels from the high-resolution operational circulation model BSHcmod, we do find distinct differences in RMS fits for various state-of-the art satellite-only models (beyond degree 145 for GRACE-only, and beyond degree 185 for GOCE models) and for combined geoid models, very similar as seen in GPS-levelling validations over land areas. We find that, at spectral resolution of up to about 200, an RMS fit as low as about 7 cm can be obtained for the most recent GOCE-derived models such as GOCO05S. This is slightly above what we expect from budgeting individual errors. Key to the validation is a proper treatment of the spectral mismatch between satellite-gravimetric and altimetric-hydrodynamic geoids. Comparison of data fits and error budget suggests that geoid truncation errors residual to EGM2008 (i.e. EGM2008 commission and omission error) may amount up to few cm.
机译:校正了潮汐,海面的大气强迫以及密度变化以及均值和时变电流的影响后,雷达测高技术就可以沿航迹实现海洋大地水准面。在这项研究中,我们调查了北海上的这种“高空流体动力”大地水准面是否以及如何用于验证卫星重力大地水准面。我们的结果表明,使用高分辨率运行循环模型BSHcmod的ERS-2和ENVISAT沿线测高仪和水位,我们确实发现了各种最先进的仅卫星模型(均除对于仅限GRACE的应用,度数为145,对于GOCE模型以及组合的大地水准面模型,度数为185。我们发现,在高达约200的光谱分辨率下,对于最新的GOCE衍生模型(例如GOCO05S),可以获得低至约7 cm的RMS拟合。这略高于我们预计的单个错误预算。验证的关键是正确处理卫星重力和高等水动力大地水准面之间的光谱失配。数据拟合和误差预算的比较表明,EGM2008残留的大地水准面截断误差(即EGM2008佣金和遗漏误差)可能长达几厘米。

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