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Imaging blended vertical seismic profiling data using full-wavefield migration in the common-receiver domain

机译:使用共接收器域中的全波场偏移对混合垂直地震剖面数据进行成像

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摘要

For vertical-seismic-profiling (VSP) measurements, the use of blended acquisition, with time-overlapping shot records, can greatly reduce the downtime and, thereby, provide large cost savings. For directly imaging blended VSP measurements, we have used full-wavefield migration (FWM). FWM is an inversion-based imaging scheme that enables us to use any kind of complex source wavefield to estimate the subsurface reflectivity, using all the multiples (surface and internal) in the recorded data. The multiple scattering helps in improving the illumination as well as the vertical resolution of the image. In this scheme, active deblending is not required because the imaging process itself acts as a deblending procedure. We tested the potential of FWM to image blended VSP data, using simple and complex synthetic models. We clearly determined that using the primaries, surface multiples, and internal multiples enhanced the illumination away from the well trajectory, in which blending noise was suppressed due to the inversion scheme. We observed that some blending crosstalk noise leaked into the images with large blending factors. Such noise could be further reduced with additional constraints in the involved least-squares inversion process.
机译:对于垂直地震剖面(VSP)测量,将混合采集与时间重叠的镜头记录配合使用,可以大大减少停机时间,从而节省大量成本。对于混合VSP测量的直接成像,我们使用了全波场偏移(FWM)。 FWM是一种基于反演的成像方案,它使我们能够利用记录数据中的所有倍数(表面和内部),使用任何种类的复杂源波场来估算地下反射率。多次散射有助于改善照明度以及图像的垂直分辨率。在该方案中,由于成像过程本身充当去掺混过程,因此不需要主动去掺混。我们使用简单和复杂的合成模型测试了FWM对混合的VSP数据进行成像的潜力。我们清楚地确定,使用原色,表面倍数和内部倍数可以增强远离井眼轨迹的照明,其中由于反演方案而抑制了混合噪声。我们观察到一些混合串扰噪声泄漏到具有大混合因子的图像中。在涉及的最小二乘反演过程中,可以通过附加约束进一步降低此类噪声。

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