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首页> 外文期刊>Journal of Geodesy >Geoid and high resolution sea surface topography modelling in the mediterranean from gravimetry, altimetry and GOCE data: evaluation by simulation
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Geoid and high resolution sea surface topography modelling in the mediterranean from gravimetry, altimetry and GOCE data: evaluation by simulation

机译:通过重力,测高和GOCE数据对地中海地区的大地水准面和高分辨率海面地形建模:模拟评估

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摘要

The determination of local geoid models has traditionally been carried out on land and at sea using gravity anomaly and satellite altimetry data, while it will be aided by the data expected from satellite missions such as those from the Gravity field and steady-state ocean circulation explorer (GOCE). To assess the performance of heterogeneous data combination to local geoid determination, simulated data for the central Mediterranean Sea are analyzed. These data include marine and land gravity anomalies, altimetric sea surface heights, and GOCE observations processed with the space-wise approach. A spectral analysis of the aforementioned data shows their complementary character. GOCE data cover long wavelengths and account for the lack of such information from gravity anomalies. This is exploited for the estimation of local covariance function models, where it is seen that models computed with GOCE data and gravity anomaly empirical covariance functions perform better than models computed without GOCE data. The geoid is estimated by different data combinations and the results show that GOCE data improve the solutions for areas covered poorly with other data types, while also accounting for any long wavelength errors of the adopted reference model thatrnexist even when the ground gravity data are dense. At sea, the altimetric data provide the dominant geoid information. However, the geoid accuracy is sensitive to orbit calibration errors and unmodeled sea surface topography (SST) effects. If such effects are present, the combination of GOCE and gravity anomaly data can improve the geoid accuracy. The present work also presents results from simulations for the recovery of the stationary SST, which show that the combination of geoid heights obtained from a spherical harmonic geo-potential model derived from GOCE with satellite altimetry data can provide SST models with some centimeters of error. However, combining data from GOCE with gravity anomalies in a collocation approach can result in the estimation of a higher resolution geoid, more suitable for high resolution mean dynamic SST modeling. Such simulations can be performed toward the development and evaluation of SST recovery methods.
机译:传统上,大地水准面模型的确定是使用重力异常和卫星测高仪数据在陆地和海上进行的,而卫星重力飞行任务和稳态海洋环流探测器等卫星任务所期望的数据将为该数据提供帮助(GOCE)。为了评估异构数据组合在确定本地大地水准面方面的性能,分析了地中海中部的模拟数据。这些数据包括海洋和陆地重力异常,高程海面高度以及采用空间方法处理的GOCE观测值。前述数据的光谱分析显示了它们的互补性。 GOCE数据涵盖了长波长,并说明了重力异常缺乏此类信息的原因。这被用于估计局部协方差函数模型,其中可以看出,使用GOCE数据和重力异常经验协方差函数计算的模型比不使用GOCE数据计算的模型表现更好。通过不同的数据组合估算大地水准面,结果表明,GOCE数据改善了其他数据类型覆盖较差的区域的解决方案,同时还考虑了即使地面重力数据密集时仍存在的所采用参考模型的任何长波长误差。在海上,高空数据提供了主要的大地水准面信息。但是,大地水准面精度对轨道校准误差和未建模的海面地形(SST)效应敏感。如果存在这种影响,GOCE和重力异常数据的组合可以提高大地水准面的精度。本工作还提供了固定SST恢复的仿真结果,表明从GOCE导出的球谐谐波地势模型获得的大地水准面高度与卫星测高仪数据可以为SST模型提供几厘米的误差。但是,通过搭配方法将GOCE的数据与重力异常结​​合起来,可以估算出更高分辨率的大地水准面,更适合于高分辨率平均动态SST建模。可以对SST恢复方法的开发和评估进行此类模拟。

著录项

  • 来源
    《Journal of Geodesy》 |2009年第8期|751-772|共22页
  • 作者单位

    DIIAR, Politecnico di Milano, Piazza Leonardo da Vinci, 32-20133 Milan, Italy;

    DIIAR, Politecnico di Milano, Polo Regionale di Como, Via Valleggio, 11-22100 Como, Italy;

    Department of Geodesy and Surveying, Aristotle University of Thessaloniki, School of Rural and Surveying Engineering, University Box 440, 54124 Thessaloniki, Greece;

    Department of Geodesy and Surveying, Aristotle University of Thessaloniki, School of Rural and Surveying Engineering, University Box 440, 54124 Thessaloniki, Greece;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    mediterranean geoid; GOCE mission; gravity; altimetry; quasi-stationary sea surface topography;

    机译:地中海大地水准面;GOCE任务;重力;高程准静止海面地形;

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