首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Annual and semiannual variations of the Earth's gravitational field from satellite laser ranging and CHAMP
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Annual and semiannual variations of the Earth's gravitational field from satellite laser ranging and CHAMP

机译:来自卫星激光测距和冠军的地球引力场的年度和半年变化

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摘要

Temporal variability in the Earth's gravity field has been estimated from 4 years of satellite laser ranging (SLR) to five geodetic satellites, Lageos 1 and 2, Stella, Starlette, and Ajisai supplemented by over 2 years of CHAMP precise orbital positioning, attitude quaternions, and accelerometry. The study considers variability at the annual and semiannual periodicities in the full field of degrees 2–6. A singular value decomposition has been employed in an attempt to recover variability from stand-alone CHAMP data. Temporal gravity field variability from SLR and from SLR and CHAMP has been computed and compared against geophysical models for surface mass redistribution. For a 4 × 4 field best agreement of the annual variation results in an RMS geoid difference of 0.76 mm with correlation coefficients above 0.85. On extending to a 6 × 6 field agreement decreases to about 1.5 mm RMS in geoid height with correlations of 0.6 at the annual cycle. For the extended field the ocean mass redistribution from Ocean Circulation and Climate Advanced Modeling project and TOPEX is seen to be deficient with near comparable correlations being obtained by neglecting the ocean contribution. The semiannual signal is weaker and less well determined. For the 4 × 4 field, correlations are no better than 0.6 with RMS of 1 mm between the SLR and geophysical models. Results show that CHAMP has a positive effect on the annual variation for a 4 × 4 field but marginal for the extended 6 × 6 field. CHAMP has a negative impact at the semiannual frequency.
机译:地球重力场中的时间变异估计从4年的卫星激光测距(SLR)到五个大地卫星,Lageos 1和2,Stella,Starlette和Ajisai,补充了超过2年的冠军精确轨道定位,态度四分音符,和加速度。该研究考虑了在2-6度的完整领域的年度和半周期的变异性。采用了奇异值分解,以试图从独立冠军数据中恢复可变性。已经计算了SLR和SLR和CHAMP的时间重力场可变性,并与地球物理模型进行了计算,用于表面质量再分布。对于4×4现场,年度变化的最佳协议会导致RMS大豆差为0.76mm,相关系数高于0.85。在延伸到6×6的场地协议上,在大量的大麻高度下降到大约1.5毫米厘米,年度周期的相关性0.6。对于延长的领域,海洋循环和气候先进的建模项目和Topex的海洋分量再分配被认为缺乏通过忽视海洋贡献而获得的附近的相当相关性。半年信号较弱,确定较少。对于4×4场,​​相关性不优于0.6,在单反和地球物理学模型之间具有1mm的RM。结果表明,冠军对4×4场的年度变化具有积极影响,但延伸的6×6个领域的边缘。冠军对半频率产生负面影响。

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  • 作者

    P. Moore; Q. Zhang; A. Alothman;

  • 作者单位

    School of Civil Engineering and Geosciences Newcastle University Newcastle UK;

    School of Civil Engineering and Geosciences Newcastle University Newcastle UK;

    School of Civil Engineering and Geosciences Newcastle University Newcastle UK;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

  • 入库时间 2022-08-20 09:24:33

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