EOT20:基于多任务卫星测高的全球经验海潮模型。

M. Hart-Davis, D. Dettmering, G. Piccioni, C. Schwatke, M. Passaro, F. Seitz
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引用次数: 1

摘要

EOT20是利用DGFI-TUM多任务卫星测高的剩余潮汐分析得出的一系列经验海潮(EOT)模型中的最新模型。基于11个卫星测高任务的经验分析,在全球0.125度网格上提供了17个潮汐分量的幅值和相位。与之前迭代的全球模型(EOT11a)相比,EOT20模型在整个海洋,特别是沿海和大陆架区域显示出显著的改进,这是由于包含了更多最新的卫星测高数据以及更多的任务,使用更新的FES2014潮汐模型作为估计残余信号的参考,包含了ALES回调器和改进的沿海表示。在使用潮汐计和海底压力数据对EOT20进行验证时,与EOT11a相比,该模式的这些改进是突出的,全球海洋8个主要潮汐成分的根平方根和(RSS)提高了~3厘米,其中沿海地区的RSS(~3.5厘米)改善最大(
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EOT20: A new global empirical ocean tide model derived from multi-mission satellite altimetry.

EOT20 is the latest in a series of empirical ocean tide (EOT) models derived using residual tidal analysis of multi-mission satellite altimetry at DGFI-TUM. The amplitudes and phases of seventeen tidal constituents are provided on a global 0.125-degree grid based on empirical analysis of eleven satellite altimetry missions. The EOT20 model shows significant improvements compared to the previous iteration of the global model (EOT11a) throughout the ocean, particularly in the coastal and shelf regions, due to the inclusion of more recent satellite altimetry data as well as more missions, the use of the updated FES2014 tidal model as a reference to estimated residual signals, the inclusion of the ALES retracker and improved coastal representation. In the validation of EOT20 using tide gauges and ocean bottom pressure data, these improvements in the model compared to EOT11a are highlighted with the root-square sum (RSS) of the eight major tidal constituents improving by ~3 cm for the entire global ocean with the major improvement in RSS (~3.5 cm) occurring in coastal regions (<1 km to the coast). Compared to the other global ocean tidal models, EOT20 shows a clear improvement of ~0.4 cm in RSS compared to the closest model (FES2014) in the global ocean. Compared to the FES2014 model, the RSS improvement in EOT20 is mainly seen in the coastal region (~0.45 cm) while in the shelf and open ocean regions these two models only vary in terms of RSS by ~0.005 cm. The significant improvement of EOT20, particularly in the coastal region, provides encouragement for the use of the EOT20 model as a tidal correction of satellite altimetry in coastal sea level research. 

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