首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Accurate measurements of tropospheric effects in volcanic areas from SAR interferometry data: application to Sakurajima volcano (Japan)
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Accurate measurements of tropospheric effects in volcanic areas from SAR interferometry data: application to Sakurajima volcano (Japan)

机译:利用SAR干涉数据准确测量火山区对流层效应:在樱岛火山中的应用(日本)

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摘要

The accuracy of surface deformation maps derived from DinSAR (differential interferometry synthetic aperture radar) in volcanic areas is limited by temporal variations of the vertical refractivity profile in the troposphere between the radar data acquisitions. Due to their dependence on altitude, such variations may produce topography-related fringes in the computed interferograms. The variations should be carefully estimated in a given area so that they can be discriminated with real ground deformation signals. In this paper, we present a clear example of tropospheric induced fringers (reaching up to 2.9 fringes over 1200 m), evidenced on Sakurajima volcano (Japan) from ERS-1 and ERS-2 data. The analysis of phase-altitude correlations based on network adjustments of the interferometric dataset leads to a simple linear model of the tropospheric excess path delay (with an rms accuracy of 0.4 cm) that might be used for further corrections. A more detailed investigation of these phase variations providing accurate measurements of linear and non-linear contributions of tropospheric effects is also presented and shows that tropospheric phase delays can be better modeled on Sakurajima with a non-linear model.
机译:从DinSAR(差分干涉测量法合成孔径雷达)得出的火山区表面变形图的准确性受到雷达数据采集之间对流层中垂直折射率分布的时间变化的限制。由于它们对海拔的依赖性,此类变化可能会在计算出的干涉图中产生与地形相关的条纹。应该仔细估计给定区域中的变化,以便可以用真实的地面变形信号来区分它们。在本文中,我们通过ERS-1和ERS-2数据在对樱岛火山(日本)上提供了一个对流层诱发边缘(在1200 m处达到2.9边缘)的清晰例子。基于干涉测量数据集网络调整的相位高度相关性分析得出对流层多余路径延迟的简单线性模型(均方根精度为0.4 cm),可用于进一步校正。还提供了对这些相位变化的更详细研究,提供了对流层效应线性和非线性影响的准确测量结果,并显示对流层相位延迟可以在Sakurajima上使用非线性模型更好地建模。

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