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Near-zone Direct and Indirect Topographic Effects Based on the Rectangular Prism and Surface Element

机译:基于矩形棱镜和表面元素的近区直接和间接地形影响

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摘要

Helmert' s second method of condensation is an effective method for terrain reduction in the geoid and quasi-geoid determinations. Condensing the masses outside the geoid to a surface layer on the geoid produces several forms of topographic effects:direct effect on gravity, secondary indirect effect on gravity and indirect effects on the ( quasi-) geoid, respectively. To strike a balance between computation accuracy and numerical efficiency, the global integration region of topographic effects is usually divided into near zone and far zone. We focus on the computation of near-zone topographic effects, which are functions of actual topographic masses and condensed masses. Since there have already been mature formulas for gravitational attraction and potential of actual topographic masses using rectangular prism model, we put forward surface element model for condensed masses. Afterwards, the formulas for near-zone direct and indirect effects are obtained easily by combining the rectangular prism model and surface element model. To overcome the planar approximation errors involved with the new formulas for near-zone topographic effects, the Earth' s curvature can be taken into account. It is recommended to apply the formulas based on the rectangular prism and surface element considering the Earth ' s curvature to calculate near-zone topographic effects for high-accuracy demand to determine geoid and quasi-geoid.
机译:Helmert的第二种冷凝方法是在大地水准面和准大地水准面确定中减少地形的有效方法。将大地水准面外部的质量压缩到大地水准面的表层上,会产生几种形式的地形效应:分别对重力产生直接影响,对重力产生间接间接影响以及对(准)大地水准面产生间接影响。为了在计算精度和数值效率之间取得平衡,地形效应的整体积分区域通常分为近区和远区。我们专注于计算近区地形效应,这是实际地形质量和凝聚质量的函数。由于已经有了使用矩形棱镜模型的引力和实际地形质量潜力的成熟公式,因此我们提出了凝聚质量的表面单元模型。然后,通过结合直角棱镜模型和表面元素模型,很容易获得近区直接和间接效应的公式。为了克服与新公式有关的近区地形效应所涉及的平面近似误差,可以考虑地球的曲率。建议根据考虑地球曲率的直角棱镜和表面元素应用公式,以计算高精度的大地水准面和准大地水准面的近区地形效应。

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  • 来源
    《测绘学报(英文)》 |2019年第003期|8-17|共10页
  • 作者单位

    Xi' an Research Institute of Surveying and Mapping, Xi' an 710054, China;

    State Key Laboratory of Geo-information Engi-neering, Xi' an 710054, China;

    Institute of Geospatial Information of Information Engineering University, Zhengzhou 450001, China;

    Xi' an Research Institute of Surveying and Mapping, Xi' an 710054, China;

    State Key Laboratory of Geo-information Engi-neering, Xi' an 710054, China;

    Geological Engineering and Geomatics School of Chang' an University, Xi' an 710064, China;

    Xi' an Research Institute of Surveying and Mapping, Xi' an 710054, China;

    State Key Laboratory of Geo-information Engi-neering, Xi' an 710054, China;

    Xi' an Research Institute of Surveying and Mapping, Xi' an 710054, China;

    State Key Laboratory of Geo-information Engi-neering, Xi' an 710054, China;

    Institute of Geospatial Information of Information Engineering University, Zhengzhou 450001, China;

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  • 入库时间 2022-08-19 04:29:45
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