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A comparison of phase inversion and traveltime tomography for processing near-surface refraction traveltimes

机译:相转换和行进时间层析成像技术在处理近地表折射行进时间方面的比较

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摘要

With phase inversion, one can estimate subsurface velocities using the phases of first-arriving waves, which are the frequency-domain equivalents of the traveltimes. Phase inversion is modified to make it suitable for processing traveltimes from near-surface refraction surveys. The modifications include parameterizing the model, correcting the observed phases, and selecting the complex frequency. This modified phase inversion is compared to traveltime tomography.For two comparisons using computer-simulated traveltimes,the difference between the estimated and correct models,the residual mean, and the residual standard deviation are smaller for the phase inversion than they are for the traveltime tomography. For a comparison using field data from an S-wave refraction survey, both methods estimate models that are consistent with the known geology. Nonetheless, the phase-inversion model includes small-scale features in the bedrock that are geologically plausible; the residual mean and the residual standard deviation are smaller for the phase inversion than they are for the traveltime tomography.
机译:通过相位反转,人们可以使用初到波的相位来估计地下速度,这些相位是行进时间的频域等效值。对相位反转进行了修改,使其适用于处理近地表折射调查中的旅行时间。修改包括参数化模型,校正观察到的相位以及选择复数频率。将此修改后的相位反转与行进时间断层扫描进行比较。对于两次使用计算机模拟行进时间进行的比较,相移的估计模型与正确模型之间的差,残差均值和残差标准偏差要比行进时间断层扫描小。为了使用来自S波折射勘测的现场数据进行比较,这两种方法均会估算与已知地质一致的模型。然而,相变模型包括基岩中在地质上合理的小尺度特征。相移的残差平均值和残差标准偏差比行进时间层析成像的残差平均值和残差标准偏差小。

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