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Evaluation of GOCE-based global gravity field models over Japan after the full mission using free-air gravity anomalies and geoid undulations

机译:全面执行任务后,利用自由重力异常和大地水准面波动对日本基于GOCE的全球重力场模型进行评估

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摘要

The performance of Gravity field and steady-state Ocean Circulation Explorer (GOCE) global gravity field models (GGMs), at the end of GOCE mission covering 42 months, is evaluated using geoid undulations and free-air gravity anomalies over Japan, including six sub-regions (Hokkaido, north Honshu, central Honshu, west Honshu, Shikoku and Kyushu). Seventeen GOCE-based GGMs are evaluated and compared with EGM2008. The evaluations are carried out at 150, 180, 210, 240 and 270 spherical harmonics degrees. Results show that EGM2008 performs better than GOCE and related GGMs in Japan and three sub-regions (Hokkaido, central Honshu and Kyushu). However, GOCE and related GGMs perform better than EGM2008 in north Honshu, west Honshu and Shikoku up to degree 240. This means that GOCE data can improve geoid model over half of Japan. The improvement is only evident between degrees 150 and 240 beyond which EGM2008 performs better than GOCE GGMs in all the six regions. In general, the latest GOCE GGMs (releases 4 and 5) perform better than the earlier GOCE GGMs (releases 1, 2 and 3), indicating the contribution of data collected by GOCE in the last months before the mission ended on 11 November 2013. The results indicate that a more accurate geoid model over Japan is achievable, based on a combination of GOCE, EGM2008 and terrestrial gravity data sets.
机译:GOCE任务结束42个月后,使用日本的大地水准面波动和自由空气重力异常评估了重力场和稳态海洋环流探测器(GOCE)全球重力场模型(GGM)的性能地区(北海道,本州北部,本州中部,本州西部,四国和九州)。对17个基于GOCE的GGM进行了评估,并将其与EGM2008进行了比较。评估是在150、180、210、240和270球谐度下进行的。结果表明,EGM2008在日本和三个子区域(北海道,本州中部和九州)的表现优于GOCE和相关GGM。但是,在本州北部,本州西部和四国,GOCE和相关的GGM的性能要优于EGM2008,最高可达240度。这意味着GOCE数据可以改善日本一半以上的大地水准面模型。仅在150度和240度之间有明显改善,在这六个区域内,EGM2008的表现均优于GOCE GGM。一般而言,最新的GOCE GGM(第4版和第5版)的性能要优于早期的GOCE GGM(第1版,第2版和第3版),表明GOCE在任务于2013年11月11日结束之前的最后几个月中收集了数据。结果表明,基于GOCE,EGM2008和地面重力数据集的组合,可以在日本获得更精确的大地水准面模型。

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