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Estimating a Continuous P-wave Velocity Profile with Constant Squared-slowness Gradient Models form Seismic Field Data

机译:估计具有恒方慢速梯度模型的连续P波速度曲线形成地震场数据

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We inverted seismic field data for a continuous, laterally invariant P-wave velocity profile. Instead of the usual approach that involves horizontal layers with piecewise constant densities and velocities, we consider models of one or two layers with a constant gradient of the squared slowness above a homogeneous halfspace. With a single layer above a halfspace, there are three parameters. With two layers, there are five. We solve the inverse problem by a direct grid search over a wide range of parameters. The results were compared to that of a piecewise-constant multi-layer inversion result. In the single-layer case, either the shallow or the deeper part of the model would match the multi-layer case, depending on which modes of the surface waves were selected. With two layers, a considerably better agreement is obtained over a larger depth range. Our method is limited to cases with a small Vs/Vp-ratio but has only 5 parameters. It could be a useful alternative to piecewise-constant multi-layer inversion, in particular if continuous P-velocity profiles are sought. These are sometimes better suited as a starting model for full waveform inversion than models with many discontinuities.
机译:我们倒置地震现场数据用于连续,横向不变的P波速度分布。而不是涉及具有分段恒定密度和速度的水平层的通常方法,我们考虑一个或两层的模型,其具有恒定的半空间上方的平方慢化的恒定梯度。在半空间上方的单层,有三个参数。有两层,有五个。我们通过直接网格搜索在广泛的参数上来解决逆问题。将结果与分段恒定的多层反转结果进行了比较。在单层外壳中,模型的浅或更深部分将匹配多层外壳,具体取决于选择的表面波的模式。有两层,在更大的深度范围内获得相当更好的一致性。我们的方法仅限于具有小VS / VP比率的情况,但仅具有5个参数。它可以是分段 - 恒定的多层反转的有用替代方案,特别是如果寻求连续的P速度轮廓。这些有时被更适合作为具有许多不连续性的模型的全波形反转的起始模型。

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