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Validation of ERS-1 and High-Resolution Satellite Gravity with in-situ Shipborne Gravity over the Indian Offshore Regions: Accuracies and Implications to Subsurface Modeling

机译:印度海上地区ERS-1和高分辨率卫星重力与原位船载重力的验证:准确性和对地下建模的影响

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摘要

Geoid and gravity anomalies derived from satellite altimetry are gradually gaining importance in marine geoscientific investigations. Keeping this in mind, we have validated ERS-1 (168 day repeat) altimeter data and very high-resolution free-air gravity data sets generated from Seasat, Geosat GM, ERS-1 and TOPEX/POSEIDON altimeters data with in-situ shipborne gravity data of both the Bay of Bengal and the Arabian Sea regions for the purpose of determining the consistencies and deviations. The RMS errors between high resolution satellite and ship gravity data vary from 2.7 to 6.0 mGal, while with ERS-1 data base the errors are as high as 16.5 mGal. We also have generated high resolution satellite gravity maps of different regions over the Indian offshore, which eventually have become much more accurate in extracting finer geological structures like 85° E Ridge, Swatch of no ground, Bombay High in comparison with ERS-1 satellite-derived gravity maps. Results from the signal processing related studies over two specific profiles in the eastern and western offshore also clearly show the advantage of high resolution satellite gravity compared to the ERS-1 derived gravity with reference to ship gravity data.
机译:从卫星测高仪得出的大地水准面和重力异常在海洋地球科学调查中正变得越来越重要。牢记这一点,我们已经验证了ERS-1(168天重复)高度计数据以及从Seasat,Geosat GM,ERS-1和TOPEX / POSEIDON高度计数据生成的超高分辨率自由重力数据集的原位船载数据孟加拉湾和阿拉伯海地区的重力数据,用于确定一致性和偏差。高分辨率卫星和船舶重力数据之间的RMS误差在2.7至6.0 mGal之间变化,而使用ERS-1数据库时,误差高达16.5 mG​​al。我们还生成了印度洋近海不同区域的高分辨率卫星重力图,与ERS-1卫星相比,该方法最终在提取更精细的地质结构(如85°E脊,无地面的斯沃琪,孟买高地)方面变得更加准确。导出的重力图。信号处理相关研究在东部和西部近海的两个特定剖面上得出的结果也清楚地表明,与参考ERS-1得出的重力相比,高分辨率的卫星重力具有优势,并参考了船舶重力数据。

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