首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Joint inversion of teleseismic and ambient noise Rayleigh waves for phase velocity maps, an application to Iceland
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Joint inversion of teleseismic and ambient noise Rayleigh waves for phase velocity maps, an application to Iceland

机译:地震和环境噪声瑞利波的联合反演用于相速度图,在冰岛的应用

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We present a method for joint inversion of teleseismic and ambient noise Rayleigh wave data for phase velocity maps from 18 to 50s period. We adapt the two-plane wave method for teleseismic data to include ambient noise phase data. We apply the method to data from Iceland's ICEMELT and HOTSPOT arrays. Checkerboard tests show that the joint inversion improves phase velocity model recovery over methods that use the data sets independently, particularly at 18s period. The addition of ambient noise data also extends resolution to shallower depths and shorter periods in comparison to previous teleseismic results beneath Iceland. We show there are significant differences in the phase velocity maps from the joint approach in comparison to other approaches, for instance, using only teleseismic data, only ambient noise data, or the mean of the two. The difference in phase velocities in turn affects the resulting shear velocity models. The advantage of the joint inversion is that it produces a single phase velocity map that satisfies both data sets simultaneously. Our phase velocity maps show a transition from low velocities centered beneath the main volcanic centers in Iceland at 18-25s period, primarily crustal depths, to a low-velocity region that traces the rift zones from the Reykjanes Ridge in the south to the Kolbeinsey Ridge in the north at 29-50s period, greater depths. These results are consistent with previous studies, although with an extended and improved region of resolution, which extends further into the Atlantic and Arctic Ocean.
机译:我们提出了一种用于地震和环境噪声瑞利波数据联合反演的方法,用于18到50s周期的相速度图。我们将两平面波方法用于远震数据,以包括环境噪声相位数据。我们将该方法应用于冰岛ICEMELT和HOTSPOT阵列的数据。棋盘格测试显示,与单独使用数据集的方法相比,联合反演可以改善相速度模型的恢复,尤其是在18s周期内。与之前在冰岛之下的远震结果相比,添加环境噪声数据还可以将分辨率扩展到更浅的深度和更短的周期。我们显示,与其他方法相比,联合方法的相速度图存在显着差异,例如,仅使用地震数据,仅环境噪声数据或两者的均值。相速度的差异反过来影响所得的剪切速度模型。联合反演的优势在于,它会生成一个单相速度图,该图同时满足两个数据集。我们的相速度图显示了从18-25s时期以冰岛主要火山中心以下为中心的低速过渡到主要是地壳深度的低速区域,该区域追踪了从南部的雷克雅内斯山脊到科尔本因西山脊的裂谷带在北部29-50年代,深度更大。这些结果与以前的研究一致,尽管分辨率范围得到扩展和改善,并进一步扩展到大西洋和北冰洋。

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