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首页> 外文期刊>Journal of Geodesy >Evaluation of the first GOCE static gravity field models using terrestrial gravity, vertical deflections and EGM2008 quasigeoid heights
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Evaluation of the first GOCE static gravity field models using terrestrial gravity, vertical deflections and EGM2008 quasigeoid heights

机译:使用地面重力,垂直偏转和EGM2008准类星高评估第一个GOCE静态重力场模型

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摘要

Recently, four global geopotential models (GGMs) were computed and released based on the first 2 months of data collected by the Gravity field and steady-state Ocean Circulation Explorer (GOCE) dedicated satellite gravity field mission. Given that GOCE is a technologically complex mission and different processing strategies were applied to real space-collected GOCE data for the first time, evaluation of the new models is an important aspect. As a first assessment strategy, we use terrestrial gravity data over Switzerland and Australia and astrogeodetic vertical deflections over Europe and Australia as ground-truth data sets for GOCE model evaluation. We apply a spectral enhancement method (SEM) to the truncated GOCE GGMs to make their spectral content more comparable with the terrestrial data. The SEM utilises the high-degree bands of EGM2008 and residual terrain model data as a data source to widely bridge the spectral gap between the satellite and terrestrial data. Analysis of root mean square (RMS) errors is carried out as a function of (i) the GOCE GGM expansion degree and (ii) the four different GOCE GGMs. The RMS curves are also compared against those from EGM2008 and GRACE-based GGMs. As a second assessment strategy, we compare global grids of GOCE GGM and EGM2008 quasigeoid heights. In connection with EGM2008 error esti- mates, this allows location of regions where GOCE is likely to deliver improved knowledge on the Earth's gravity field. Our ground truth data sets, together with the EGM2008 quasigeoid comparisons, signal clear improvements in the spectral band ~160-165 to ~180-185 in terms of spherical harmonic degrees for the GOCE-based GGMs, fairly independently of the individual GOCE model used. The results from both assessments together provide strong evidence that the first 2 months of GOCE observations improve the knowledge of the Earth's static gravity field at spatial scales between ~125 and ~110 km, particularly over parts of Asia, Africa, South America and Antarctica, in comparison with the pre-GOCE-era.
机译:最近,根据重力场和稳态海洋环流探测器(GOCE)专用卫星重力场任务收集的前两个月的数据,计算并发布了四个全球地势模型(GGM)。鉴于GOCE是一项技术复杂的任务,并且首次将不同的处理策略应用于实际空间收集的GOCE数据,因此评估新模型是一个重要方面。作为第一种评估策略,我们将瑞士和澳大利亚的地心引力数据以及欧洲和澳大利亚的地磁垂直挠度用作GOCE模型评估的真实数据集。我们将光谱增强方法(SEM)应用于截短的GOCE GGM,以使其光谱含量与地面数据更具可比性。扫描电镜利用EGM2008的高波段和残余地形模型数据作为数据源,广泛地弥合了卫星和地面数据之间的频谱差距。根据(i)GOCE GGM扩展度和(ii)四个不同的GOCE GGM进行均方根(RMS)误差分析。还将RMS曲线与EGM2008和基于GRACE的GGM的曲线进行了比较。作为第二种评估策略,我们比较了GOCE GGM和EGM2008准类星高的全球网格。结合EGM2008的误差估计,可以确定GOCE可能提供有关地球重力场的知识的区域。我们的地面实况数据集,再加上EGM2008准类星体的比较,就基于GOCE的GGM的球谐度而言,信号范围在〜160-165至〜180-185范围内明显改善,这完全独立于所使用的单个GOCE模型。两项评估的结果共同提供了有力的证据,表明GOCE观测的前两个月在〜125至〜110 km的空间范围内,尤其是在亚洲,非洲,南美和南极洲的部分地区,提高了对地球静态重力场的了解,与GOCE之前的时期相比。

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  • 来源
    《Journal of Geodesy》 |2011年第10期|p.723-740|共18页
  • 作者单位

    Western Australian Centre for Geodesy, The Institute for Geoscience Research, Curtin University of Technology, GPO Box U1987, Perth, WA 6845, Australia;

    Institute of Astronomical and Physical Geodesy, Technische Universitaet Muenchen, Arcisstrasse 21, 80333 Muenchen, Germany;

    Western Australian Centre for Geodesy, The Institute for Geoscience Research, Curtin University of Technology, GPO Box U1987, Perth, WA 6845, Australia;

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

    GOCE; validation; spectral enhancement; gravity; vertical deflections; EGM2008; GRACE;

    机译:GOCE;验证;光谱增强重力;垂直偏转EGM2008;恩典;

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