基于赫尔默特第二冷凝法的边界值问题高频地形效应组合算法

IF 3.9 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS
Jian Ma, Ziqing Wei, Zhenhe Zhai, Xinxing Li
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引用次数: 0

摘要

在根据边界值理论确定大地水准面和准大地水准面时,通常使用赫尔默特第二凝结法凝结边界面外的地形质量。地形块的凝聚会产生直接和间接的地形效应。如今,移除-计算-恢复(Remove-Compute-Restore,RCR)技术已在边界值问题中得到广泛应用。考虑到光谱一致性,当地球引力模型作为确定(准)大地水准面的参考模型时,高频直接和间接地形效应应被用于霍廷-赫尔默特/斯托克斯-赫尔默特积分。因此,本手稿研究了高频地形效应的算法。首先,推导出了近区直接和间接地形效应棱镜法,与传统的表面积分法相比,提高了近区效应的精度。其次,针对远区地形效应,提出了截断为 H4 功率的 Molodenskii 频谱方法。接着,进一步介绍了针对高频地形效应的 "棱镜 + 莫洛登斯基光谱 - 球谐波 "组合算法。最后,在山区测试区域验证了高频地形效应组合算法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Combined algorithms of high-frequency topographical effects for the boundary-value problems based on Helmert's second condensation method

Combined algorithms of high-frequency topographical effects for the boundary-value problems based on Helmert's second condensation method

The Helmert’s second condensation method is usually used to condense the topographical masses outside the boundary surface in the determination of the geoid and quasi-geoid based on the boundary-value theory. The condensation of topographical masses produces direct and indirect topographical effects. Nowadays, the Remove-Compute-Restore (RCR) technique has been widely utilized in the boundary-value problems. In view of spectral consistency, high-frequency direct and indirect topographical effects should be used in the Hotine-Helmert/Stokes–Helmert integral when the Earth gravitational model serves as the reference model in determining the (quasi-) geoid. Thus, the algorithms for high-frequency topographical effects are investigated in this manuscript. First, the prism methods for near-zone direct and indirect topographical effects are derived to improve the accuracies of near-zone effects compared with the traditional surface integral methods. Second, the Molodenskii spectral methods truncated to power H4 are put forward for far-zone topographical effects. Next, the "prism + Molodenskii spectral-spherical harmonic" combined algorithms for high-frequency topographical effects are further presented. At last, the effectiveness of the combined algorithms for the high-frequency topographical effects are verified in a mountainous test area.

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来源期刊
Journal of Geodesy
Journal of Geodesy 地学-地球化学与地球物理
CiteScore
8.60
自引率
9.10%
发文量
85
审稿时长
9 months
期刊介绍: The Journal of Geodesy is an international journal concerned with the study of scientific problems of geodesy and related interdisciplinary sciences. Peer-reviewed papers are published on theoretical or modeling studies, and on results of experiments and interpretations. Besides original research papers, the journal includes commissioned review papers on topical subjects and special issues arising from chosen scientific symposia or workshops. The journal covers the whole range of geodetic science and reports on theoretical and applied studies in research areas such as: -Positioning -Reference frame -Geodetic networks -Modeling and quality control -Space geodesy -Remote sensing -Gravity fields -Geodynamics
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