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Global compilation of interferometric synthetic aperture radar earthquake source models: 1. Comparisons with seismic catalogs

机译:干涉式合成孔径雷达地震源模型的全球汇编:1.与地震目录的比较

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While many earthquakes have now been studied using interferometric synthetic aperture radar (InSAR) data, a full assessment of the quality and additional value of InSAR source parameters compared to seismological techniques is still lacking. We compile a catalog of source models obtained using InSAR and estimate the corresponding centroid moment tensor (CMT) parameters; we refer to this compilation as the ICMT archive. We compare source parameters from over 70 InSAR studies of 57 global earthquakes with those in the Global CMT (GCMT), International Seismological Centre (ISC) and Engdahl‐Hilst‐Buland (EHB) seismic catalogs. We find an overall good agreement between fault strike, dip and rake values in the GCMT and ICMT archives. Likewise, the differences in seismic moment between these two archives are relatively small, and we do not find support for previously suggested trends of InSAR leading to larger moments than seismic data. However, epicentral locations show substantial discrepancies, which are larger for the GCMT (median differences of ~21 km) than for the EHB and ISC catalogs (median differences of ~10 km). Since InSAR data have a high spatial resolution, and thus should map epicentral locations accurately, this allows us to obtain a first independent estimate of epicentral location errors in the seismic catalogs. Earthquake depths from InSAR are systematically shallower than those in the EHB catalog, with a median of differences of ~5 km. While this trend may be partly due to unmodeled crustal complexity, it is also compatible with the observation that the rupture of crustal earthquakes tends to propagate upward in the seismogenic layer.
机译:虽然现在已经使用干涉式合成孔径雷达(InSAR)数据研究了许多地震,但是与地震技术相比,仍缺乏对InSAR源参数的质量和附加值的全面评估。我们编译使用InSAR获得的源模型目录,并估计相应的质心矩张量(CMT)参数;我们将此汇编称为ICMT存档。我们将来自70项针对57场全球地震的InSAR研究与全球CMT(GCMT),国际地震中心(ISC)和Engdahl-Hilst-Buland(EHB)地震目录中的源参数进行了比较。我们在GCMT和ICMT档案中发现了故障罢工,倾角和前倾值之间的总体良好协议。同样,这两个档案库之间的地震矩差异相对较小,我们没有发现先前提出的InSAR趋势导致的矩大于地震数据的趋势的证据。但是,震中位置显示出很大的差异,GCMT(中位数差异为〜21 km)比EHB和ISC目录(中位数差异为〜10 km)更大。由于InSAR数据具有较高的空间分辨率,因此应该准确地绘制震中位置,这使我们能够获得地震目录中震中位置误差的第一个独立估计。 InSAR的地震深度在系统上比EHB目录中的要浅,中间值相差约5 km。尽管这种趋势可能部分归因于未建模的地壳复杂性,但也与地壳地震的破裂趋于在震源层中向上传播的观察结果相吻合。

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