Publication profile
Publication profile
Daniel Barker
Name:
Daniel Barker
Title:
Seniorforsker / Senior Research Scientist
Phone:
(+47) +47 22 85 25 65
Email:
barker [at] nr [dot] no
Scientific areas:
Seismic inversion, Petroleum exploration, Software development

Add to contacts (vCard) Show publications
Academic article
2014
An alternative method for modeling close-range interactions between air guns. Geophysics (ISSN 0016-8033). 79(2) pp 1-7. doi: 10.1190/geo2013-0141.1. 2014.
. 2013
Modeling close range air gun interactions using isosurfaces of the velocity potential. Society of Exploration Geophysicists. Expanded Abstracts with Biographies (ISSN 1052-3812). pp 46-50. doi: 10.1190/segam2013-0489.1. 2013.
. Estimation of bubble time period for air-gun clusters using potential isosurfaces. Geophysics (ISSN 0016-8033). 78(4) pp P1-P7. doi: 10.1190/GEO2012-0344.1. 2013.
. 2012
Simple expression for the bubble-time period of two clustered air guns. Geophysics (ISSN 0016-8033). 77(1) pp A1-A3. doi: 10.1190/GEO2011-0169.1. 2012.
. Controlled source strength variation by changing the firing pressure - a sensitivity study for 4D calibration. Geophysical Prospecting (ISSN 0016-8025). 60(3) pp 480-487. doi: 10.1111/j.1365-2478.2011.01044.x. 2012.
. 2011
High-frequency signals from air-gun arrays. Geophysics (ISSN 0016-8033). 76(4) pp Q19-Q27. doi: 10.1190/1.3590215. 2011.
. Academic chapter/article/Conference paper
2018
Simulation of Gaussian Random Fields Using the Fast Fourier Transform (FFT). In: ECMOR XVI - 16th European Conference on the Mathematics of Oil Recovery, 3–6 September 2018, Barcelona, Spain. (ISBN 978-94-6282-260-3). doi: 10.3997/2214-4609.201802134. 2018.
. 2009
Controlled Source Strength Variation by Changing the Firing Pressure - A Sensitivity Study for 4D Calibration. In: 71st EAGE Conference & Exhibition Amsterdam 2009. (ISBN 978-90-73781-67-2). 2009.
. Report
2021
PCube User Manual Version 9.0. Norsk Regnesentral. NR-notat SAND/14/21. pp 109. 2021.
. PCube Reference Manual. Norsk Regnesentral. NR-notat SAND/18/21. pp 56. 2021.
. Grunnvannsmodellering med RMS og MODFLOW6. Norsk Regnesentral. NR-notat SAND/03/21. pp 21. 2021.
. GIG annual meeting 2021 - Summary of 2020 and planned work for 2021. Norsk Regnesentral. NR-notat SAND/01/21. pp 35. 2021.
. 2020
PCube Reference Manual. Norsk Regnesentral. NR-notat SAND/03/20. pp 38. 2020.
. Deep learning in seismic interpretations - Development and experiments 2020. Norsk Regnesentral. NR-notat SAMBA/51/20. pp 26. 2020.
. GIG annual meeting 2020 Summary of 2019 and planned work for 2020. Norsk Regnesentral. NR-notat SAND/01/2020. pp 31. 2020.
. PCube+ User Manual Version 8.0. Norsk Regnesentral. NR-notat SAND/04/2020. pp 82. 2020.
. 2019
Deep learning in seismic interpretation. Norsk Regnesentral. NR-notat SAMBA/49/19. pp 39. 2019.
. Deep learning for seismic processing and condition monitoring. Norsk Regnesentral. NR-notat SAND/05/2019. pp 13. 2019.
. GIG annual meeting 2019 - Summary of 2018 and planned work for 2019. Norsk Regnesentral. NR-notat SAND/01/19. pp 27. 2019.
. 2018
Simulation of Gaussian Random Fields Using the Fast Fourier Transform. Norsk Regnesentral. NR-notat SAND/04/18. pp 33. 2018.
. User Manual: Rock Physics Prior Modelling GUI. Norsk Regnesentral. NR-notat SAND/13/18. pp 18. 2018.
. This is a user manual for PCube. PCube is a seismic inversion software that computes lithology and fluid probabilities from seismic AVO data. Norsk Regnesentral. NR-notat SAND/05/18. pp 72. 2018.
. 2017
User Manual: Rock Physics Prior Modelling GUI. Norsk Regnesentral. NR-notat SAND/12/17. pp 16. 2017.
. PCube+ Forward Modelling QC User Manual. Norsk Regnesentral. NR-notat SAND/06/2017. pp 10. 2017.
.

Name: | Daniel Barker |
Title: | Seniorforsker / Senior Research Scientist |
Phone: | (+47) +47 22 85 25 65 |
Email: | barker [at] nr [dot] no |
Scientific areas: | Seismic inversion, Petroleum exploration, Software development |
![]() | Add to contacts (vCard) |
Show publications |
Academic article
2014
An alternative method for modeling close-range interactions between air guns. Geophysics (ISSN 0016-8033). 79(2) pp 1-7. doi: 10.1190/geo2013-0141.1. 2014.
. 2013
Modeling close range air gun interactions using isosurfaces of the velocity potential. Society of Exploration Geophysicists. Expanded Abstracts with Biographies (ISSN 1052-3812). pp 46-50. doi: 10.1190/segam2013-0489.1. 2013.
. Estimation of bubble time period for air-gun clusters using potential isosurfaces. Geophysics (ISSN 0016-8033). 78(4) pp P1-P7. doi: 10.1190/GEO2012-0344.1. 2013.
. 2012
Simple expression for the bubble-time period of two clustered air guns. Geophysics (ISSN 0016-8033). 77(1) pp A1-A3. doi: 10.1190/GEO2011-0169.1. 2012.
. Controlled source strength variation by changing the firing pressure - a sensitivity study for 4D calibration. Geophysical Prospecting (ISSN 0016-8025). 60(3) pp 480-487. doi: 10.1111/j.1365-2478.2011.01044.x. 2012.
. 2011
High-frequency signals from air-gun arrays. Geophysics (ISSN 0016-8033). 76(4) pp Q19-Q27. doi: 10.1190/1.3590215. 2011.
. Academic chapter/article/Conference paper
2018
Simulation of Gaussian Random Fields Using the Fast Fourier Transform (FFT). In: ECMOR XVI - 16th European Conference on the Mathematics of Oil Recovery, 3–6 September 2018, Barcelona, Spain. (ISBN 978-94-6282-260-3). doi: 10.3997/2214-4609.201802134. 2018.
. 2009
Controlled Source Strength Variation by Changing the Firing Pressure - A Sensitivity Study for 4D Calibration. In: 71st EAGE Conference & Exhibition Amsterdam 2009. (ISBN 978-90-73781-67-2). 2009.
. Report
2021
PCube User Manual Version 9.0. Norsk Regnesentral. NR-notat SAND/14/21. pp 109. 2021.
. PCube Reference Manual. Norsk Regnesentral. NR-notat SAND/18/21. pp 56. 2021.
. Grunnvannsmodellering med RMS og MODFLOW6. Norsk Regnesentral. NR-notat SAND/03/21. pp 21. 2021.
. GIG annual meeting 2021 - Summary of 2020 and planned work for 2021. Norsk Regnesentral. NR-notat SAND/01/21. pp 35. 2021.
. 2020
PCube Reference Manual. Norsk Regnesentral. NR-notat SAND/03/20. pp 38. 2020.
. Deep learning in seismic interpretations - Development and experiments 2020. Norsk Regnesentral. NR-notat SAMBA/51/20. pp 26. 2020.
. GIG annual meeting 2020 Summary of 2019 and planned work for 2020. Norsk Regnesentral. NR-notat SAND/01/2020. pp 31. 2020.
. PCube+ User Manual Version 8.0. Norsk Regnesentral. NR-notat SAND/04/2020. pp 82. 2020.
. 2019
Deep learning in seismic interpretation. Norsk Regnesentral. NR-notat SAMBA/49/19. pp 39. 2019.
. Deep learning for seismic processing and condition monitoring. Norsk Regnesentral. NR-notat SAND/05/2019. pp 13. 2019.
. GIG annual meeting 2019 - Summary of 2018 and planned work for 2019. Norsk Regnesentral. NR-notat SAND/01/19. pp 27. 2019.
. 2018
Simulation of Gaussian Random Fields Using the Fast Fourier Transform. Norsk Regnesentral. NR-notat SAND/04/18. pp 33. 2018.
. User Manual: Rock Physics Prior Modelling GUI. Norsk Regnesentral. NR-notat SAND/13/18. pp 18. 2018.
. This is a user manual for PCube. PCube is a seismic inversion software that computes lithology and fluid probabilities from seismic AVO data. Norsk Regnesentral. NR-notat SAND/05/18. pp 72. 2018.
. 2017
User Manual: Rock Physics Prior Modelling GUI. Norsk Regnesentral. NR-notat SAND/12/17. pp 16. 2017.
. PCube+ Forward Modelling QC User Manual. Norsk Regnesentral. NR-notat SAND/06/2017. pp 10. 2017.
.