3-D predrill overpressure prediction using prestack depth-migrated seismic velocity in a field of southwestern Malay Basin

Quantitative predrill pore pressure prediction is very important for reducing the drilling hazards. In many Tertiary basins, generation of overpressure is mainly by compaction disequilibrium due to high deposition rate and low permeability in shale. In the Malay Basin, high geothermal gradient (i.e....

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Main Authors: Satti, I.A., Ghosh, D., Wan Yusoff, W.I.
Format: Article
Published: Springer Verlag 2015
Online Access:https://www.scopus.com/inward/record.uri?eid=2-s2.0-84940437255&doi=10.1007%2fs12517-014-1734-y&partnerID=40&md5=9385412fddcd48d46ad406f9c993bbcc
http://eprints.utp.edu.my/31579/
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spelling my.utp.eprints.315792022-03-26T03:23:14Z 3-D predrill overpressure prediction using prestack depth-migrated seismic velocity in a field of southwestern Malay Basin Satti, I.A. Ghosh, D. Wan Yusoff, W.I. Quantitative predrill pore pressure prediction is very important for reducing the drilling hazards. In many Tertiary basins, generation of overpressure is mainly by compaction disequilibrium due to high deposition rate and low permeability in shale. In the Malay Basin, high geothermal gradient (i.e., 40�60 °C/km) and high heat flow also play an important role in generating overpressure at shallow depth. This study describes the utilization of 3-D prestack depth-migrated seismic interval velocity for predrill pore pressure prediction in a field of southwestern Malay Basin. The quality of 3-D prestack depth-migrated seismic interval velocity was enhanced by calibration with check-shot data. Modified Gardner�s equation was used to generate the 3-D density cube from the interval velocity. The Eaton and Bowers methods were used to compute and predict pore pressure values from the seismic velocity. The Eaton method with standard exponent for seismic velocity gave good prediction in the shallower zone where overpressure is caused by undercompaction mechanism, whereas underpredicted the high pore pressure at the greater depth where fluid expansion is the cause of overpressure. However, the overpressures were predicted quite well by applying correction on the Eaton method for fluid expansion mechanism. © 2014, Saudi Society for Geosciences. Springer Verlag 2015 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-84940437255&doi=10.1007%2fs12517-014-1734-y&partnerID=40&md5=9385412fddcd48d46ad406f9c993bbcc Satti, I.A. and Ghosh, D. and Wan Yusoff, W.I. (2015) 3-D predrill overpressure prediction using prestack depth-migrated seismic velocity in a field of southwestern Malay Basin. Arabian Journal of Geosciences, 8 (9). pp. 7387-7398. http://eprints.utp.edu.my/31579/
institution Universiti Teknologi Petronas
building UTP Resource Centre
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Petronas
content_source UTP Institutional Repository
url_provider http://eprints.utp.edu.my/
description Quantitative predrill pore pressure prediction is very important for reducing the drilling hazards. In many Tertiary basins, generation of overpressure is mainly by compaction disequilibrium due to high deposition rate and low permeability in shale. In the Malay Basin, high geothermal gradient (i.e., 40�60 °C/km) and high heat flow also play an important role in generating overpressure at shallow depth. This study describes the utilization of 3-D prestack depth-migrated seismic interval velocity for predrill pore pressure prediction in a field of southwestern Malay Basin. The quality of 3-D prestack depth-migrated seismic interval velocity was enhanced by calibration with check-shot data. Modified Gardner�s equation was used to generate the 3-D density cube from the interval velocity. The Eaton and Bowers methods were used to compute and predict pore pressure values from the seismic velocity. The Eaton method with standard exponent for seismic velocity gave good prediction in the shallower zone where overpressure is caused by undercompaction mechanism, whereas underpredicted the high pore pressure at the greater depth where fluid expansion is the cause of overpressure. However, the overpressures were predicted quite well by applying correction on the Eaton method for fluid expansion mechanism. © 2014, Saudi Society for Geosciences.
format Article
author Satti, I.A.
Ghosh, D.
Wan Yusoff, W.I.
spellingShingle Satti, I.A.
Ghosh, D.
Wan Yusoff, W.I.
3-D predrill overpressure prediction using prestack depth-migrated seismic velocity in a field of southwestern Malay Basin
author_facet Satti, I.A.
Ghosh, D.
Wan Yusoff, W.I.
author_sort Satti, I.A.
title 3-D predrill overpressure prediction using prestack depth-migrated seismic velocity in a field of southwestern Malay Basin
title_short 3-D predrill overpressure prediction using prestack depth-migrated seismic velocity in a field of southwestern Malay Basin
title_full 3-D predrill overpressure prediction using prestack depth-migrated seismic velocity in a field of southwestern Malay Basin
title_fullStr 3-D predrill overpressure prediction using prestack depth-migrated seismic velocity in a field of southwestern Malay Basin
title_full_unstemmed 3-D predrill overpressure prediction using prestack depth-migrated seismic velocity in a field of southwestern Malay Basin
title_sort 3-d predrill overpressure prediction using prestack depth-migrated seismic velocity in a field of southwestern malay basin
publisher Springer Verlag
publishDate 2015
url https://www.scopus.com/inward/record.uri?eid=2-s2.0-84940437255&doi=10.1007%2fs12517-014-1734-y&partnerID=40&md5=9385412fddcd48d46ad406f9c993bbcc
http://eprints.utp.edu.my/31579/
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