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Sensitivity of earthquake source inversions to atmospheric noise and corrections of InSAR data

机译:地震震源反演对大气噪声的敏感性及InSAR数据校正

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Tropospheric phase delays pose a major challenge to InSAR (interferometric synthetic aperture radar)-based studies of tectonic deformation. One approach to the mitigation of effects from tropospheric noise is the application of elevation-dependent corrections based on empirical fits between elevation and interferometric phase. We quantify the effects of corrections with a range of complexity on inferred earthquake source parameters using synthetic interferograms with known atmospheric characteristics. We infer statistical properties of the stratified component of the atmosphere using pressure, temperature, and water vapor data from the North America Regional Reanalysis model over our region of interest in the Basin and Range province of the western United States. The statistics of the simulated atmospheric turbulence are estimated from InSAR and Global Positioning System data. We demonstrate potentially significant improvements in the precision of earthquake magnitude, depth, and dip estimates for several synthetic earthquake focal mechanisms following a correction for spatially variable atmospheric characteristics, relative to cases where the correction is based on a uniform delay versus elevation relationship or where no correction is applied. We apply our approach to the 1992 M5.6 Little Skull Mountain, Nevada, earthquake and demonstrate that the earthquake source parameter error bounds decrease in size after applying the atmospheric corrections. Our approach for evaluating the impact of atmospheric noise on inferred fault parameters is easily adaptable to other regions and source mechanisms.
机译:对流层相位延迟对基于InSAR(干涉式合成孔径雷达)的构造变形研究提出了重大挑战。减轻对流层噪声影响的一种方法是应用基于仰角的校正,该校正基于仰角和干涉相位之间的经验拟合。我们使用已知大气特征的合成干涉图,以一定范围的复杂性来量化校正对推断地震源参数的影响。我们使用来自北美地区再分析模型的压力,温度和水蒸气数据,根据美国西部盆地和Range省的我们感兴趣的区域,推断出大气分层成分的统计属性。根据InSAR和全球定位系统数据估算了模拟的大气湍流的统计数据。我们证明,相对于基于统一时延与海拔关系的校正或没有校正的情况,针对几种合成的地震震源机制,在校正了空间可变的大气特征之后,地震震级,深度和倾角估计的精度可能会显着提高。进行校正。我们将我们的方法应用于内华达州1992年M5.6小头骨山地震,并证明了在应用大气校正后,震源参数误差范围的减小。我们评估大气噪声对推断的故障参数的影响的方法很容易适用于其他区域和源机制。

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