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- W2080272128 abstract "PreviousNext No AccessSEG Technical Program Expanded Abstracts 2014Building a robust framework model for geomechanical prediction of fracture density, orientation and likely hydraulic signature: Leading-edge technology in the Gorm field Danish Central GrabenAuthors: D. Quinn*B. FreemanC. G. DillonM. ArnhildB. JaarsmaD. Quinn*Badley Geoscience Ltd.Search for more papers by this author, B. FreemanBadley Geoscience Ltd.Search for more papers by this author, C. G. DillonBadley Geoscience Ltd.Search for more papers by this author, M. ArnhildMaersk Oil NorwaySearch for more papers by this author, and B. JaarsmaEBNSearch for more papers by this authorhttps://doi.org/10.1190/segam2014-0148.1 SectionsSupplemental MaterialAboutPDF/ePub ToolsAdd to favoritesDownload CitationsTrack CitationsPermissions ShareFacebookTwitterLinked InRedditEmail Abstract The Gorm field is a salt-cored, faulted chalk dome, central to the infrastructure of the Danish North Sea. Production has been in decline in recent years. To this end a geomechanical study was commissioned to derisk critical well infill. A mechanically robust framework model is the cornerstone of further analysis, various QA techniques were employed and will be discussed in detail in this paper. When modelling the geomechanics, core and image log data from 13 wells provide a first order, independent assessment of the predictive method. Recently a well was drilled in an area where our geomechanical models predict high fracture density and conductivity. “It had much higher productivity than predicted by matrix properties modelling, and is now the most productive well in the field accounting for over 25% of daily production, clearly enhanced by natural fractures” (Arnhild pers comm.). Keywords: faults, fractures, interpretation, North Sea, geologyPermalink: https://doi.org/10.1190/segam2014-0148.1FiguresReferencesRelatedDetails SEG Technical Program Expanded Abstracts 2014ISSN (print):1052-3812 ISSN (online):1949-4645Copyright: 2014 Pages: 5183 publication data© 2014 Published in electronic format with permission by the Society of Exploration GeophysicistsPublisher:Society of Exploration Geophysicists HistoryPublished: 05 Aug 2014 CITATION INFORMATION D. Quinn*, B. Freeman, C. G. Dillon, M. Arnhild, and B. Jaarsma, (2014), Building a robust framework model for geomechanical prediction of fracture density, orientation and likely hydraulic signature: Leading-edge technology in the Gorm field Danish Central Graben, SEG Technical Program Expanded Abstracts : 1528-1532. https://doi.org/10.1190/segam2014-0148.1 Plain-Language Summary KeywordsfaultsfracturesinterpretationNorth SeageologyPDF DownloadLoading ..." @default.
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- W2080272128 title "Building a robust framework model for geomechanical prediction of fracture density, orientation and likely hydraulic signature: Leading-edge technology in the Gorm field Danish Central Graben" @default.
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