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- W2497362690 abstract "PreviousNext No AccessHeavy Oils: Reservoir Characterization and Production Monitoring23. Using Time-Lapse Seismic to Monitor the Toe-to-Heel-Air-Injection (THAI™) Heavy-Oil Production ProcessAuthors: Rob KendallD. HanJ. LiuM. BatzleD. HanH. ZhaoM. BatzleD. SchmittD. TradM. HallM. CotraRob KendallPetrobank Energy and Resources Ltd., Calgary, Alberta, CASearch for more papers by this author, D. HanSearch for more papers by this author, J. LiuSearch for more papers by this author, M. BatzleSearch for more papers by this author, D. HanSearch for more papers by this author, H. ZhaoSearch for more papers by this author, M. BatzleSearch for more papers by this author, D. SchmittSearch for more papers by this author, D. TradSearch for more papers by this author, M. HallSearch for more papers by this author, and M. CotraSearch for more papers by this authorhttps://doi.org/10.1190/1.9781560802235.ch23 SectionsAboutPDF/ePub ToolsAdd to favoritesDownload CitationsTrack CitationsPermissions ShareFacebookTwitterLinked InRedditEmail Abstract Introduction The Whitesands project is located in the Athabasca Oil Sands near Conklin, Alberta (Figure 1). Toe-to-Heel-Air-Injection (THAI™) is an in situ controlled combustion process that cracks, upgrades, and mobilizes heavy oil. The Whitesands pilot project is designed around three well pairs producing from a central facility. Air injection commenced on the first well pair in July 2006. Air injection on the second well pair was initiated in January 2007 and on the third pair in June 2007. The project's first THAI and CAPRI™ well was drilled in the second quarter of 2008, which also incorporated a revised completion design to improve downhole sand control. The position and progress of the combustion front is being monitored using tilt meters, passive seismic, and active 4D seismic. Each of the three methods identifies the combustion zone, but the active 4D seismic method provides the most reliable and detailed information. Permalink: https://doi.org/10.1190/1.9781560802235.ch23References Han, D., J. Liu, and M. Batzle, 2006, Acoustic properties of heavy oil measured data: 76th Annual International Meeting, SEG, Expanded Abstracts, 1903–1907. AbstractGoogle Scholar Han, D., H. Zhao, and M. Batzle, 2007, Velocity of heavy oil sand: 77th Annual International Meeting, SEG, Expanded Abstracts, 1619–1623. AbstractGoogle Scholar Schmitt, D., 1999, Seismic attributes for monitoring of a shallow heated heavy oil reservoir: a case study: Geophysics, 64, 368–377. AbstractGoogle Scholar Trad, D., M. Hall, and M. Cotra, 2008, Merging surveys with multidimensional interpolation: 2008 CSPG-Canadian Society of Exploration Geophysicists-Canadian Well Logging Society Convention, Expanded Abstracts, 172–176. Google ScholarFiguresReferencesRelatedDetailsCited ByNanoparticles for Heavy Oil Upgrading16 February 2022Influence of temperature on seismic velocities and complex conductivity of heavy oil-bearing sandsFernando J. Martinez, Michael L. Batzle, and André Revil24 April 2012 | GEOPHYSICS, Vol. 77, No. 3 Heavy Oils: Reservoir Characterization and Production MonitoringISBN (print):978-1-56080-222-8ISBN (online):978-1-56080-223-5Copyright: 2010 Pages: 339 publication data© 2010 All rights reserved. No part of this publication may be reproduced or distributed in any form or by any means without written permission of the publisherPublisher:Society of Exploration Geophysicists HistoryPublished in print: 01 Jan 2010 CITATION INFORMATION Rob Kendall, (2010), 23. Using Time-Lapse Seismic to Monitor the Toe-to-Heel-Air-Injection (THAI™) Heavy-Oil Production Process, Geophysical Developments Series : 275-284. https://doi.org/10.1190/1.9781560802235.ch23 Plain-Language Summary PDF DownloadLoading ..." @default.
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