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Joint inversion of receiver function and surface-wave phase velocity for estimation of shear-wave velocity of sedimentary layers

机译:接收函数和面波相速度的联合反演,用于估算沉积层的剪切波速度

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摘要

In this study, we propose a joint inversion method, using genetic algorithms, to determine the shear-wave velocity structure of deep sedimentary layers from receiver functions and surface-wave phase velocity. Numerical experiments with synthetic data indicate that the proposed method can avoid the trade-off between shear-wave velocity and thickness that arises when inverting the receiver function only, and the uncertainty in deep structure from surface-wave phase velocity inversion alone. We apply the method to receiver functions obtained from earthquake records with epicentral distances of about 100 km, and Rayleigh-wave phase velocities obtained from a microtremor array survey in the Kanto Plain, Japan. The estimated subsurface structure is in good agreement with the previous results of seismic refraction surveys and deep borehole data.
机译:在这项研究中,我们提出了一种联合反演方法,利用遗传算法,从接收函数和表面波相速度确定深部沉积层的剪切波速度结构。综合数据的数值实验表明,该方法可以避免剪切波速度与厚度之间的权衡取舍,而仅在将接收器函数反演时,这种方法就可以避免,而仅通过表面波相速度反演就可以避免深层结构的不确定性。我们将该方法应用于从地震记录获得的接收器函数,震中距离大约为100 km,而雷利波相速度是从日本关东平原的微震阵列调查获得的。估计的地下结构与地震折射调查和深孔数据的先前结果非常吻合。

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