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The European Gravity Field and Steady-State Ocean Circulation Explorer Satellite Mission Its Impact on Geophysics

机译:欧洲重力场和稳态海洋环流探测器卫星任务对地球物理学的影响

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摘要

Current knowledge of the Earth's gravity field and its geoid, as derived from various observing techniques and sources, is incomplete. Within a reasonable time, substantial improvement will come by exploiting new approaches based on spaceborne gravity observation. Among these, the European Space Agency (ESA) Gravity field and steady-state Ocean Circulation Explorer (GOCE) satellite mission concept has been conceived and designed taking into account multi-disciplinary research objectives in solid Earth physics, oceanography and geodesy. Based on the unique capability of a gravity gradiometer combined with satellite-to-satellite high-low tracking techniques, an accurate and detailed global model of the Earth's gravity field and its corresponding geoid will be recovered. The importance of this is demonstrated by a series of realistic simulation experiments. In particular, the quantitative impact of the new and accurate gravity field and geoid is examined in studies of tectonic composition and motion, Glaciological Isostatic Adjustment, ocean mesoscale variability, water mass transport, and unification of height systems. Improved knowledge in each of these fields will also ensure the accumulation of new understanding of past and present sea-level changes.
机译:从各种观测技术和来源得出的关于地球重力场及其大地水准面的当前知识是不完整的。在合理的时间内,将通过利用基于星载重力观测的新方法来取得重大改进。其中,考虑到固体地球物理学,海洋学和大地测量学的多学科研究目标,设计并设计了欧洲航天局(ESA)重力场和稳态海洋环流探测器(GOCE)卫星任务概念。基于重力梯度仪结合卫星到卫星的高低跟踪技术的独特功能,将恢复出地球重力场及其对应的大地水准面的准确而详尽的全球模型。一系列现实的仿真实验证明了这一点的重要性。特别是,在构造组成和运动,冰川等静压调整,海洋中尺度变化,水质传输和高度系统统一的研究中,研究了新的精确重力场和大地水准面的定量影响。这些领域中每个领域知识的提高也将确保对过去和现在的海平面变化的新认识不断积累。

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  • 来源
    《Surveys in Geophysics》 |2003年第4期|339-386|共48页
  • 作者单位

    Nansen Environmental and Remote Sensing CenterGeophysical Institute University of Bergen;

    Centre National d`Etudes Spatiales – GRGS;

    Laboratoire d'Etudes en Géophysique et Océanographie Spatiales;

    Astronomical and Physical Geodetic Institute Technical University of Munich;

    Dipartimento di Scienze della Terra Universitá di Milano;

    Mathematical Geodesy and Geoinformatics Technical University of Graz;

    Department of Geophysics University of Copenhagen;

    Delft Institute for Earth-Oriented Space Research Delft University of Technology;

    Proudman Oceanographic Laboratory Bidston Observatory;

    Proudman Oceanographic Laboratory Bidston Observatory;

    IFREMER Physical Oceanography Department Technopole Brest Iroise;

    Department of Geomatics Engineering University of CalgaryAstronomical and Physical Geodetic Institute Technical University of Munich;

    Centre National d`Etudes Spatiales – GRGS;

    European Space Agency - ESTEC;

    European Space Agency - ESTEC;

    European Space Agency - ESTEC;

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