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Articles

Passive seismic full waveform inversion using reconstructed body-waves for subsurface velocity construction

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Pages 124-135 | Received 05 Dec 2017, Accepted 22 Apr 2018, Published online: 22 Feb 2019

References

  • Alali, A., J. Neut, and D. Draganov. 2016. Merging active and passive seismic reflection data with interferometry by multidimensional deconvolution. 86th SEG annual meeting, Expanded Abstracts, 5182–186.
  • Ali, M.Y., K.A. Berteussen, J. Small, and B. Barkat. 2010. Low-frequency passive seismic experiments in Abu Dhabi, United Arab Emirates: implications for hydrocarbon detection. Geophysical Prospecting 58: 875–99.
  • Berkhout, A.J., and D.J. Verschuur. 2009. Integrated imaging with active and passive seismic data. 79th SEG annual meeting, Expanded Abstracts, 1592–6.
  • Berkhout, A.J., and D.J. Verschuur. 2011. A scientific framework for active and passive seismic imaging, with applications to blended data and micro-earthquake responses. Geophysical Journal International 184: 777–92.
  • Boullenger, B., A. Verdel, B. Paap, J. Thorbecke, and D. Draganov. 2015. Studying CO2 storage with ambient-noise seismic interferometry: A combined numerical feasibility study and field-data example for Ketzin, Germany. Geophysics 80, no. 1: Q1–13.
  • Chávez-García, F.J., and T. Yokoi. 2016. High lateral resolution exploration using surface waves from noise records. Exploration Geophysics 47: 123–32.
  • Chen, J., and C.A. Zelt. 2016. Application of frequency-dependent traveltime tomography and full waveform inversion to realistic near-surface seismic refraction data. Journal of Environmental and Engineering Geophysics 21, no. 1: 1–12.
  • Chen, J., C.A. Zelt, and P. Jaiswal. 2017. Detecting a known near-surface target through application of frequency-dependent traveltime tomography and full-waveform inversion to P-and SH-wave seismic refraction data. Geophysics 82, no. 1: R1–17.
  • Cheraghi, S., D.J. White, D. Draganov, G. Bellefleur, J.A. Craven, and B. Roberts. 2017. Passive seismic reflection interferometry: A case study from the Aquistore CO2 storage site, Saskatchewan, Canada. Geophysics 82, no. 3: B79–93.
  • Choi, Y., and T. Alkhalifah. 2011. Source-independent time-domain waveform inversion using convolved wavefields: Application to the encoded multisource waveform inversion. Geophysics 76, no. 5: R125–34.
  • Claerbout, J.F. 1968. Synthesis of a layered medium from its acoustic transmission response. Geophysics 33, no. 2: 264–9.
  • Delaney, E., L. Ermert, K. Sager, A. Kritski, S. Bussat, and A. Fichtner. 2017. Passive seismic monitoring with nonstationary noise sources. Geophysics 82, no. 4: KS57–70.
  • Draganov, D., K. Wapenaar, and J. Thorbecke. 2006. Seismic interferometry: Reconstructing the earth’s reflection responses. Geophysics 71, no. 4: SI61–70.
  • Draganov, D., K. Wapenaar, W. Mulder, J. Singer, and A. Verdel. 2007. Retrieval of reflections from seismic background-noise measurements. Geophysical Research Letters 34: L04305.
  • Draganov, D., X. Campman, J. Thorbecke, A. Verdel, and K. Wapenaar. 2009. Reflection images from ambient seismic noise. Geophysics 74, no. 5: A63–7.
  • Forgues, E., E. Schissele-Rebel, and J. Cotton. 2011. Simultaneous active/passive seismic monitoring of steam assisted heavy oil production. 81th SEG annual meeting, Expanded Abstracts, 4082–6.
  • Gao, W., M.D. Sacchi, and Z. Li. 2017. Microseismic source location via elastic least squares full waveform inversion with a group sparsity constraint. 87th SEG annual meeting, Expanded Abstracts, 2814–9.
  • Goertz, A., B. Schechinger, B. Witten, M. Koerbe, and P. Krajewski. 2012. Extracting subsurface information from ambient seismic noise – A case study from Germany. Geophysics 77, no. 4: KS13–31.
  • Hayashi, K. 2017. Application of active and passive surface wave methods to shallow to deep S-wave velocity estimation. 87th SEG annual meeting, Expanded Abstracts, 5202–6.
  • James, S.R., H.A. Knox, L. Preston, J.M. Knox, M.C. Grubelich, D.K. King, J.B. Ajo-Franklin, T.C. Johnson, and J.P. Morris. 2017. Fracture detection and imaging through relative seismic velocity changes using distributed acoustic sensing and ambient seismic noise. The Leading Edge 36, no. 12: 1009–17.
  • Kaderli, J., M. McChesney, and S.E. Minkoff. 2015. Microseismic event estimation in noisy data via full waveform inversion. 85th SEG annual meeting, Expanded Abstracts, 1159–64.
  • Kamei, R., and D. Lumley. 2014. Passive seismic imaging and velocity inversion using full wavefield methods. 84th SEG annual meeting, Expanded Abstracts, 2273–77.
  • Lee, K.H., and H.J. Kim. 2003. Source-independent full-waveform inversion of seismic data. Geophysics 68: 2010–15.
  • Michel, O.J., and I. Tsvankin. 2013. Gradient computation for full-waveform inversion of microseismic data in VTI media. 83th SEG annual meeting, Expanded Abstracts, 2238–42.
  • Mora, P. 1987. Nonlinear two-dimensional elastic inversion of multioffset seismic data. Geophysics 52, no. 9: 1211–28.
  • Olivier, G., F. Brenguier, M. Campillo, R. Lynch, and P. Roux. 2015. Body-wave reconstruction from ambient seismic noise correlations in an underground mine. Geophysics 80, no. 3: KS11–25.
  • Olofsson, B. 2010. Marine ambient seismic noise in the frequency range 1-10Hz. The Leading Edge 29, no. 4: 418–35.
  • Panea, I., V. Mocanu, and C. Lacob. 2012. Analysis of passive surface waves from ambient-noise recordings. The Leading Edge 31, no. 12: 1484–88.
  • Park, C.B., R.D. Miller, N. Ryden, J. Xia, and J. Ivanov. 2005. Combined use of active and passive surface waves. Journal of Environmental and Engineering Geophysics 10, no. 3: 323–34.
  • Plessix, R.E. 2006. A review of the adjoint-state method for computing the gradient of a functional with geophysical applications. Geophysical Journal International 167: 495–503.
  • Sager, K., L. Ermert, C. Boehm, and A. Fichtner. 2018. Towards full waveform ambient noise inversion. Geophysical Journal International 212: 566–90.
  • Schuster, G.T., and Y. Luo. 1991. Wave-equation traveltime inversion. Geophysics 56, no. 5: 645–53.
  • Schuster, G.T., and J. Rickett. 2001. Daylight imaging in V(x,y,z) media. Stanford Exploration Project, Report SEP-105, 209–27.
  • Sethi, H.S., and B. Shekar. 2017. Full waveform inversion for microseismic events using sparsity constraints. 87th SEG annual meeting, Expanded Abstracts, 2888–92.
  • Sheng, J., A. Leeds, M. Buddensiek, and G.T. Schuster. 2006. Early arrival waveform tomography on near-surface refraction data. Geophysics 71, no. 4: U47–57.
  • Sun, J., Z. Xue, T. Zhu, et al. 2016. Full waveform inversion of passive seismic data for sources and velocities. 86th SEG annual meeting, Expanded Abstracts, 1405–10.
  • Thorbecke, J.W., and D. Draganov. 2011. Finite-difference modeling experiments for seismic interferometry. Geophysics 76, no. 6: H1–18.
  • Tarantola, A. 1984. Inversion of seismic reflection data in the acoustic approximation. Geophysics 49, no. 8: 1259–1266.
  • Vesnaver, A., L. Lovisa, and G. Bohm. 2010. Joint 3D processing of active and passive seismic data. Geophysical Prospecting 58: 831–44.
  • Virieux, J., and S. Operto. 2009. An overview of full waveform inversion in exploration geophysics. Geophysics 74, no. 6: WCC1–26.
  • Wang, H., and T. Alkhalifah. 2016. Micro-seismic imaging using a source independent full waveform inversion method. 86th SEG annual meeting, Expanded Abstracts, 2596–600.
  • Wapenaar, K., and J. Fokkema. 2006. Green’s function representations for seismic interferometry. Geophysics 71, no. 4: SI33–46.
  • Wapenaar, K., J. Neut, and E. Ruigrok. 2008. Passive seismic interferometry by multi-dimensional deconvolution. Geophysics 73, no. 6: A51–6.
  • Wapenaar, K., J. Neut, E. Ruigrok, D. Draganov, J. Hunziker, E. Slob, J. Thorbecke, and R. Snieder. 2011. Seismic interferometry by crosscorrelation and multidimensional deconvolution, a systematic comparison. Geophysical Journal International 185: 1335–64.
  • Wu, R.S., J. Luo, and B. Wu. 2014. Seismic envelope inversion and modulation signal model. Geophysics 79, no. 3: WA13–24.
  • Xu, Y., B. Zhang, Y. Luo, and J. Xia. 2013. Surface-wave observation after integrating active and passive source data. The Leading Edge 32, no. 6: 634–7.
  • Zelt, C.A., and J. Chen. 2016. Frequency-dependent traveltime tomography for near-surface seismic refraction data. Geophysical Journal International 207: 72–88.
  • Zhang, P., L. Han, Q. Liu, Z. Ya-Hong, and C. Xue. 2015a. Interpolation of seismic data from active and passive sources and their joint migration imaging. Chinese Journal of Geophysics (in Chinese) 58, no. 5: 1754–66.
  • Zhang, P., L. Han, Y. Zhou, Z. Xu, and Q.-X. Ge. 2015b. Passive-source multitaper-spectral method based low-frequency data reconstruction for active seismic sources. Applied Geophysics 12, no. 4: 585–97.
  • Zhang, P., L. Han, H. Gao, et al. 2015c. Genetic algorithm full waveform inversion for microseismic location. 85th SEG annual meeting, Expanded Abstracts, 2650–4.
  • Zhang, P., L. Han, Z. Jin, et al. 2016. Passive source illumination compensation based full waveform inversion. 78th EAGE Conference & Exhibition, Expanded Abstracts, Th SP1 05.
  • Zhang, P., L. Han, Z. Xu, F. Zhang, and Y. Wei. 2017. Sparse blind deconvolution based low-frequency seismic data reconstruction for multiscale full waveform inversion. Journal of Applied Geophysics 139: 91–108.
  • Zhang, P., L. Han, X. Gong, H. Sun, and B. Mao. 2018. Multi-source elastic full waveform inversion based on the anisotropic total variation constraint. Chinese Journal of Geophysics (in Chinese) 61, no. 2: 716–32.
  • Zhang, X., W. Zhang, and J. Zhang. 2014. Elastic full waveform inversion of microseismic data for location and source mechanism. 84th SEG annual meeting, Expanded Abstracts, 2256–60.
  • Zhou, C., W. Cai, Y. Luo, G.T. Schuster, and S. Hassanzadeh. 1995. Acoustic wave-equation traveltime and waveform inversion of crosshole seismic data. Geophysics 60, no. 3: 765–73.

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