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Traveltime tomography and prestack depth migration for vertical seismic profiling of an angle-domain walkaway on a complex surface

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Abstract

Walkaway VSP cannot obtain accurate velocity field, as it asymmetrically reflects ray path and provides uneven coverage to underground target, thereby presenting issues related to imaging quality. In this study, we propose combining traveltime tomography and prestack depth migration for VSP of an angle-domain walkaway, in a bid to establish accurate two-dimensional and three-dimensional (3D) velocity models. First, residual curvature was defined to update velocity, and an accurate velocity field was established. To establish a high-precision velocity model, we deduced the relationship between the residual depth and traveltime of common imaging gathers (CIGs) in walkaway VSP. Solving renewal velocity using the least squares method, a four-parameter tomographic inversion equation was derived comprising formation dip angle, incidence angle, residual depth, and sensitivity matrix. In the angle domain, the reflected wave was divided into up- and down-transmitted waves and their traveltimes were calculated. The systematic cumulative method was employed in prestack depth migration of a complex surface. Through prestack depth migration, the offset-domain CIGs were obtained, and dip angle was established by defining the stack section horizon. Runge—Kutta ray tracing was employed to calculate the ray path from the reflection point to the detection point, to determine the incident angle, and to subsequently calculate the ray path from the reflection point to the irregular surface. The offset-domain residual depths were mapped to the angle domain, and a new tomographic equation was established and solved. Application in the double complex area of the Tarim Basin showed the four-parameter tomographic inversion equation derived in this paper to be both correct and practical and that the migration algorithm was able to adapt to the complex surface.

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References

  • Al-Yahya, K., 1989, Velocity analysis by iterative profile migration: Geophysics, 54(6), 718–729.

    Article  Google Scholar 

  • Biondi, B., and Symes, W. W., 2004, Angle-domain common image gathers for migration velocity analysis by wavefield-continuation imaging: Geophysics, 69(5), 1283–1298.

    Article  Google Scholar 

  • Beasley, C., and Lynn, W., 1992, The zero-velocity layer: Migration from irregular surfaces: Geophysics, 57(11), 1435–1443.

    Article  Google Scholar 

  • Clapp, R. G., Biondi, B. L., and Claerbout, J. F., 2004, Incorporating geologic information into reflection tomography: Geophysics, 69(2), 533–546.

    Article  Google Scholar 

  • Gary, F. M., 2005, Planned seismic imaging using explicit one-way operators: Geophysics, 70(5), 101–109.

    Article  Google Scholar 

  • He, Y., Wang, H. Z., Ma, Z. T., et al., 2002, Prestack wave equation depth migration for irregular topography: Progress in Exploration Geophysics (in Chinese), 25(3), 13–19.

    Google Scholar 

  • Liu, D. J., Jiang, B., Li, B., et al., 2016, Rugged-topography reverse time migration in complex piedmont zone: Oil Geophysical Prospecting (in Chinese), 51(2), 315–324.

    Google Scholar 

  • Prucha, M. B., Biondi, B. L., Symes, W. W., 1999, Angle-domain common image gathers by wave-equation migration: 69th Annual International Meeting, SEG, Expanded Abstracts, 824–827.

    Google Scholar 

  • Qin, N., Li, Z. C., Yang, X. D., et al., 2013, Traveltime velocity tomography based on ADCIGs of Gaussian beam: Oil Geophysical Prospecting (in Chinese), 48(3), 366–371.

    Google Scholar 

  • Reshef, M., 1991, Depth migration from irregular surfaces with depth extrapolation methods: Geophysics, 56(1), 119–122.

    Article  Google Scholar 

  • Sava, P., Biondi, B. L., 2004a, Wave-equation migration velocity analysis-I Theory: Geophysical Prospecting, 52(6), 593–606.

    Article  Google Scholar 

  • Stork, C., Clayton, R. W., 1991, Linear aspects of tomographic velocity analysis: Geophysics, 56(4), 483–495.

    Article  Google Scholar 

  • Sava, P., Biondi, B. L., 2004b, Wave-equation migration velocity analysis-II Subsalt imaging examples: Geophysical Prospecting, 52(6), 607–623.

    Article  Google Scholar 

  • Shao, R. F., Fang, W. B., Cai, J. X., et al., 2016, A method of migration velocity analysis based on Gaussian Beam tomography and its application: Geophysical Prospecting for Petroleum (in Chinese), 55(1), 91–99.

    Google Scholar 

  • Taner M. T., Kochler F., Alhilali K. A., 1974, Estimation and correction surface time anomalies: Geophysics, 39(3), 441–463.

    Article  Google Scholar 

  • Wei, Y. W., Xiong, B., and Tang, G. B., 2015, Angle domain tomographic migration velocity analysis based on symplectic Runge-Kutta seismic ray tracing with trapezoid cells: Journal of Guilin University of Technology (in Chinese), 35(3), 431–436.

    Google Scholar 

  • Xia, F., Ren, Y., and Jin, S., 2006, Residual migration-velocity analysis using common angle image gathers: 76th Annual International Meeting, SEG, Expanded Abstracts, 2455–2459.

    Google Scholar 

  • Xie, X., and Wu, R., 2002, Extracting angle domain information from migrated wavefield: 72th Annual International Meeting, SEG, Expanded Abstracts, 1360–1363.

    Google Scholar 

  • Zhang, K., Li, Z. C., Zeng, T. S., et al., 2010, Residual curvature migration velocity analysis for angle domain common imaging gathers: Applied Geophysics, 7(1), 49–56.

    Article  Google Scholar 

  • Zhang, M., Li, Z. C., Zhang, K., et al., 2011, Comparisons and analysis of prestack migration common-image point gathers: Progress in Geophysics (in Chinese), 26(1), 220–228.

    Google Scholar 

  • Zhang, H., and Zhang, J. F., 2012, 3D prestack time migration including surface topography: Chinese Journal of Geophysics (in Chinese), 55(4), 1335–1344.

    Google Scholar 

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Correspondence to Jian-Guo Li.

Additional information

This work was supported by the national project “Geophysical Complex Technologies for Reservoirs and Unconventional Gas Reservoirs” (No. 2017 ZX05018-004-003).

Li Jian-Guo, an engineer and master graduated from the Solid Geophysics specialty of Chang’an University in 2008. He is engaged in VSP data processing and interpretation at Bureau of Geophysical Prospecting Inc., China National Petroleum Corporation. His main research direction is VSP velocity modeling and prestack depth migration.

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Li, JG., Cui, XJ., Huang, JH. et al. Traveltime tomography and prestack depth migration for vertical seismic profiling of an angle-domain walkaway on a complex surface. Appl. Geophys. 16, 358–366 (2019). https://doi.org/10.1007/s11770-019-0769-y

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  • DOI: https://doi.org/10.1007/s11770-019-0769-y

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