首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Local vertical seismic profiling (VSP) elastic reverse-time migration and migration resolution: Salt-flank imaging with transmitted P-to-S waves
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Local vertical seismic profiling (VSP) elastic reverse-time migration and migration resolution: Salt-flank imaging with transmitted P-to-S waves

机译:局部垂直地震剖面(VSP)弹性逆时偏移和偏移分辨率:透射P-S波的盐翼成像

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摘要

To avoid the defocusing effects of propagating waves through salt and overburden with an inaccurate overburden velocity model, we introduce a vertical seismic profiling VSP local elastic reverse-time-migration RTM method for salt-flank imaging by transmitted P-to-S waves. This method back-projects the transmitted PS waves using a local velocity model around the well until they are in phase with the back-projected PP waves at the salt boundaries. The merits of this method are that it does not require the complex overburden and salt-body velocities and it automatically accounts for source-side statics. In addition, the method accounts for kinematic and dynamic effects, including anisotropy, absorption, and all other unknown rock effects outside of this local subsalt velocity model. Numerical tests on an elastic salt model and offset 2D VSP data in the Gulf of Mexico, using a finite- difference time-domain staggered-grid RTMscheme, partly demonstrate the effectiveness of this method over interferometry PS-PP transmission migration and local acoustic RTM. Our method separates elastic wavefields to vector P- and S-wave velocity components at the trial image point and achieves better resolution than local acoustic RTM and interferometric transmission migration. The analytical formulas of migration resolution for local acoustic and elastic RTM show that the migration illumination is limited by data frequency and receiver aperture, and the spatial resolution is lower than standard poststack and prestack migration. This new method can image salt flanks as well as subsalt reflectors.
机译:为避免通过不准确的上覆速度模型传播通过盐和上覆岩的波的散焦效果,我们引入了垂直地震剖面VSP局部弹性逆时偏移RTM方法,通过透射P-to-S波进行盐翼成像。该方法使用井周围的局部速度模型反演传输的PS波,直到它们与盐边界处反投影的PP波同相为止。这种方法的优点是它不需要复杂的上覆层速度和盐体速度,并且可以自动考虑源侧静力学。此外,该方法考虑了运动学和动力学效应,包括各向异性,吸收以及该局部盐下速度模型之外的所有其他未知岩石效应。使用有限差分时域交错网格RTM方案对墨西哥湾的弹性盐模型和偏移2D VSP数据进行了数值测试,部分证明了该方法在干涉PS-PP传输迁移和局部声学RTM方面的有效性。我们的方法在试验图像点将弹性波场分离为矢量P波和S波速度分量,并且比本地声学RTM和干涉传输迁移具有更好的分辨率。局部声波和弹性RTM的偏移分辨率的解析公式表明,偏移照明受到数据频率和接收器孔径的限制,并且空间分辨率低于标准叠后和叠前偏移。这种新方法可以成像盐侧翼和盐下反射器。

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