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首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Computing near-surface velocity models for S-wave static corrections using raypath interferometry
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Computing near-surface velocity models for S-wave static corrections using raypath interferometry

机译:使用RAYPATH干涉测量计算S波静态校正的近表面速度模型

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摘要

A near-surface velocity model is one of the typical products generated when computing static corrections, particularly in the processing of PP data. Critically refracted waves are the input usually needed for this process. In addition, for the converted PS mode, S-wave near-surface corrections must be applied at the receiver locations. In this case, however, critically refracted S-waves are difficult to identify when using P-wave energy sources. We use the tau-p representation of the converted-wave data to capture the intercept-time differences between receiver locations. These tau-differences are then used in the inversion of a near-surface S-wave velocity model. Our processing workflow provides not only a set of raypath-dependent S-wave static corrections, but also a velocity model that is based on those corrections. Our computed near-surface S-wave velocity model can be used for building migration velocity models or to initialize elastic full-waveform inversions. Our tests on synthetic and field data provided superior results to those obtained by using a surface-consistent solution.
机译:近表面速度模型是计算静态校正时产生的典型产品之一,特别是在PP数据的处理中。严重折射波是该过程所需的输入。另外,对于转换后的PS模式,必须在接收器位置应用S波近表面校正。然而,在这种情况下,当使用P波能源时,难以识别批判性折射的S波。我们使用转换波数据的Tau-P表示来捕获接收器位置之间的拦截时间差异。然后在近表面S波速度模型的反转中使用这些TAU差异。我们的处理工作流程不仅提供了一组缺点依赖的S波静态校正,还提供了基于这些校正的速度模型。我们计算的近表面S波速度模型可用于构建迁移速度模型或初始化弹性全波形反转。我们对合成和现场数据的测试为通过使用表面一致的溶液获得的那些提供了优异的结果。

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