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Evaluation of terrain corrections through FFT and classical integration in two selected areas of the Andes and their impact on geoidal heights

机译:通过FFT和经典积分评估安第斯山脉两个选定区域中的地形校正及其对大地水准面的影响

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As part of the regional geoid modeling, terrain corrections were computed in Tierra del Fuego island and in the west side of the province of Mendoza. The first place is located in the southernmost region of Argentina and Mendoza is in the center-west of this country. Considering both study areas, elevations range from 0 m to 6500 m. The classical integration of prism contribution and the 2-D FFT technique were used to estimate terrain corrections. This study aims at discussing the results obtained by both approaches and their applicability considering their advantages and disadvantages according to the regions under investigation. The analysis allowed us to conclude that classical integration has a better performance than FFT methods, especially in the highest regions where terrain corrections can be overestimated in more than 20 mGals by FFT. Both techniques described show similar results in flat areas. Finally, the effect that the error of terrain corrections computation has on geoidal heights is also discussed and numerically tested. It is proved that an error in gravity anomalies of 20 mGals may cause up to 2 m geoid height error.
机译:作为区域大地水准面模型的一部分,对Tierra del Fuego岛和门多萨省西侧的地形进行了校正。第一名位于阿根廷最南端,门多萨(Mendoza)在该国中西部。考虑到两个研究区域,海拔范围从0 m到6500 m。棱镜贡献和2-D FFT技术的经典积分用于估算地形校正。这项研究的目的是根据所研究的区域,讨论通过两种方法获得的结果及其适用性,同时考虑其优缺点。通过分析,我们可以得出结论,经典积分比FFT方法具有更好的性能,尤其是在最高区域中,FFT可以在20 mGal以上高估地形校正。所描述的两种技术在平坦区域显示出相似的结果。最后,还讨论了地形校正计算误差对大地水准面高度的影响并进行了数值测试。事实证明,重力异常20 mGal可能会导致高达2 m的大地水准面高度误差。

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