1887
  • ISSN: 1443-2471
  • E-ISSN: 1836-084X

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2016-10-01
2026-01-23
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References

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    https://doi.org/10.1190/geo2015-0078.1
  2. Bagaini, C., 2010, Acquisition and processing of simultaneous vibroseis data: Geophysical Prospecting, 58, 81–99. doi:10.1111/j.1365‑2478.2009.00842.x
    https://doi.org/10.1111/j.1365-2478.2009.00842.x
  3. Beasley, C. J., 2008, A new look at marine simultaneous sources: The Leading Edge, 27(7), 914–917. doi:10.1190/1.2954033
    https://doi.org/10.1190/1.2954033
  4. Bianchi, T., Monk, D., and Meunier, J., 2009, Fold or force? Paper read at 71st EAGE Annual Meeting, at Amsterdam, The Netherlands.
  5. Bouska, J., 2010, Distance separated simultaneous sweeping, for fast, clean, vibroseis acquisition: Geophysical Prospecting, 58(1), 123–153. doi:10.1111/j.1365‑2478.2009.00843.x
    https://doi.org/10.1111/j.1365-2478.2009.00843.x
  6. Dean, T., 2012, An extra 10% – improving the productivity of vibroseis surveys through advanced fleet management: SEG Technical Program Expanded Abstracts, 2012, 1–5.
  7. Dean, T., 2014, The use of pseudorandom sweeps for vibroseis surveys: Geophysical Prospecting, 62, 50–74. doi:10.1111/1365‑2478.12074
    https://doi.org/10.1111/1365-2478.12074
  8. Dean, T., and Tulett, J., 2014, The relationship between the signal-to-noise ratio of downhole data and vibroseis source parameters. Paper read at 76th EAGE Conference and Exhibition, at Amsterdam, The Netherlands.
  9. Dean, T., Kristiansen, P., and Vermeer, P. L., 2010, High productivity without compromise – the relationship between productivity, quality and vibroseis group size. Paper read at Proceedings of the EAGE, at Barcelona, Spain.
  10. Howe, D., Foster, M., Allen, T., Taylor, B., and Jack, I., 2008, Independent simultaneous sweeping – a method to increase the productivity of land seismic crews: SEG Technical Program Expanded Abstracts, 2008, 2826–2830.
  11. Howe, D., Foster, M., Allen, T., Jack, I., Buddery, D., Choi, A., Abma, R., Manning, T., and Pfister, M., 2009, Independent simultaneous sweeping in Libya-full scale implementation and new developments: SEG Technical Program Expanded Abstracts, 2009, 109–111.
  12. Matheny, P., Sambell, R., Mahrooqi, S., Yarubi, S., and Abri, S., 2009, Evolution of the land seismic super crew: SEG Technical Program Expanded Abstracts, 2009, 81–85.
  13. Pecholcs, P. I., Lafon, S. K., Al-Ghamdi, T., Al-Shammery, H., Kelamis, P. G., Huo, S. X., Winter, O., Kerboul, J. B., and Klein, T., 2010, Over 40,000 vibrator points per day with real-time quality control: opportunities and challenges: SEG Technical Program Expanded Abstracts, 2010, 111–115. doi:10.1190/1.3513041
    https://doi.org/10.1190/1.3513041
  14. Pecholcs, P. I., Al-Saad, R., Al-Sannaa, M., Quigley, J., Bagaini, C., Zarkhidze, A., May, R., Guellili, M., Sinanaj, S., and Membrouk, M., 2012, A broadband full azimuth land seismic case study from Saudi Arabia using a 100,000 channel recording system at 6 terabytes per day: acquisition and processing lessons learned: SEG Technical Program Expanded Abstracts, 2012, 1–5.
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  16. Stone, J. A., and Bouska, J., 2013, Distance separated simultaneous sweeping, providing record-breaking productivity and a step-change in data quality in BP Jordan’s Risha seismic survey: First Break, 31(12), 53–60.
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