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首页> 外文期刊>Journal of Seismic Exploration >P- AND S-WAVE SEPARATION AND DECOMPOSITION OF TWO- AND THREE-COMPONENT ELASTIC SEISMOGRAMS
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P- AND S-WAVE SEPARATION AND DECOMPOSITION OF TWO- AND THREE-COMPONENT ELASTIC SEISMOGRAMS

机译:两分量和三分量弹性地震图的P波和S波分离与分解

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摘要

Multi-component seismic data are valuable in estimating subsurface elastic parameters. The coexistence of P- and S-waves in multi-component surface seismic data poses an obstacle in extracting the elastic properties. Thus, it is crucial to separate the P- and S-waves in elastic seismograms, or during wavefield extrapolations. We analyze an algorithm that can perform both P- and S-wave separation and vector decomposition of multi-component elastic seismograms that are collected from various media, including isotropie, heterogeneous and transversely isotropie, and we extend it to 3D. This algorithm is based on the dispersion relations of P- and S-waves in isotropic and anisotropic wavefields; the near-surface velocity zone can be separated into several segments horizontally to handle heterogeneity. The algorithm is efficient, and no elastic wavefield extrapolations are needed to perform the separation or decomposition, so no subsurface information is needed, apart from the near-surface model parameters (i.e., P- and S-wave velocities, anisotropic parameters) along the receiver arrays. Tests with synthetic data from various 2D and 3D models show high accuracy by comparing the separation and decomposition results from benchmarks that can only be obtained during elastic wavefield forward modeling.
机译:多分量地震数据在估算地下弹性参数方面很有价值。多分量地表地震数据中P波和S波的共存在提取弹性特性方面构成障碍。因此,在弹性地震图中或在波场外推过程中分离P波和S波至关重要。我们分析了一种算法,该算法既可以执行P波和S波分离,又可以对从各向同性,非均质和横向各向同性介质中收集的多分量弹性地震图进行矢量分解,并将其扩展到3D。该算法基于P波和S波在各向同性和各向异性波场中的色散关系。可以将近地表速度带水平地分成几段以处理非均质性。该算法是有效的,不需要弹性波场外推法来执行分离或分解,因此除了沿地表的近地表模型参数(即P和S波速度,各向异性参数)外,不需要地下信息。接收器阵列。使用来自各种2D和3D模型的合成数据进行的测试通过比较基准的分离和分解结果显示出很高的准确性,这些基准只能在弹性波场正向建模过程中获得。

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