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Surface wave phase velocity maps from multiscale wave field interpolation

机译:多尺度波场插值的表面波相速度图

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Availability of spatially dense broadband observations of seismic surface wave fields allows to derive phase velocity maps on regional scale by non-tomographic means. I present a multiscale interpolation scheme for surface wave fields where for each observed wave field, a multiscale phase velocity map and its standard deviation are calculated from subsets of the available data. Isotropic phase velocity (with an estimate on its standard deviation) is then found as the weighted mean of multiscale maps from different observations. Comparison of different interpolation schemes on synthetic wave fields shows that bivariate linear interpolation of phases in a triangulated region, in conjunction with multiscale stacking, is not inferior than methods involving higher-order polynomials. The recovered phase velocity maps are, in the presence of random uncertainties with realistic magnitude, largely free of artifacts and restore a synthetic input model reasonably well. The method is applied to a subset of Rayleigh wave observations at USArray which yields phase velocity maps well within the range of published results. Multiscale interpolation seems to be a practical alternative to tomographic inversion for regional broadband seismic networks (≥30 stations). It requires no choice of arbitrary parameters and is in- sensitive to number of earthquakes and their azimuthal distribution.
机译:地震表面波场的空间密集宽带观测的可用性允许通过非断层摄影手段在区域尺度上导出相速度图。我提出了一种针对表面波场的多尺度插值方案,其中针对每个观察到的波场,从可用数据的子集计算出多尺度相速度图及其标准偏差。各向同性相速度(带有其标准偏差的估计值)然后被作为来自不同观测值的多尺度图的加权平均值。在合成波场上不同插值方案的比较表明,三角区域内相位的双变量线性插值,与多尺度堆叠相结合,并不比涉及高阶多项式的方法逊色。在存在具有实际大小的随机不确定性的情况下,恢复的相速度图在很大程度上没有伪影,并且相当好地恢复了合成输入模型。该方法被应用于USArray的瑞利波观测的子集,其产生的相速度图恰好在已发表结果的范围内。对于区域宽带地震网络(≥30个站),多尺度插值似乎是层析反演的一种实用替代方法。它不需要选择任意参数,并且对地震次数及其方位角分布不敏感。

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