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- W3014704512 abstract "PreviousNext No AccessFifth International Conference on Engineering Geophysics, Al Ain, UAE, 21–24 October 2019Multiphysics low-perturbation methods for sediment characterization and process monitoringAuthors: J.C. Santamarina*A. GarciaF. HakikiJ. ParkB. ZhaoJ.C. Santamarina*King Abdullah University of Science and Technology, Saudi ArabiaSearch for more papers by this author, A. GarciaKing Abdullah University of Science and Technology, Saudi ArabiaSearch for more papers by this author, F. HakikiKing Abdullah University of Science and Technology, Saudi ArabiaSearch for more papers by this author, J. ParkKing Abdullah University of Science and Technology, Saudi ArabiaSearch for more papers by this author, and B. ZhaoKing Abdullah University of Science and Technology, Saudi ArabiaSearch for more papers by this authorhttps://doi.org/10.1190/iceg2019-042.1 SectionsAboutPDF/ePub ToolsAdd to favoritesDownload CitationsTrack CitationsPermissions ShareFacebookTwitterLinked InRedditEmail Abstract Multiphysics low-perturbation methods provide complementary information needed for comprehensive sediment characterization and process monitoring. We describe underlying physical concepts and report new results gathered using nuclear magnetic resonance, thermal conduction, electromagnetic and elastic waves. Keywords: acoustic, nuclear magnetic resonance, electromagnetic, heat flowPermalink: https://doi.org/10.1190/iceg2019-042.1FiguresReferencesRelatedDetails Fifth International Conference on Engineering Geophysics, Al Ain, UAE, 21–24 October 2019ISSN (online):2159-6832Copyright: 2020 Pages: 315 publication data© 2020 Published in electronic format with permission by the Society of Exploration GeophysicistsPublisher:Society of Exploration Geophysicists HistoryPublished: 03 Apr 2020 CITATION INFORMATION J.C. Santamarina*, A. Garcia, F. Hakiki, J. Park, and B. Zhao, (2020), Multiphysics low-perturbation methods for sediment characterization and process monitoring, SEG Global Meeting Abstracts : 163-166. https://doi.org/10.1190/iceg2019-042.1 Plain-Language Summary Keywordsacousticnuclear magnetic resonanceelectromagneticheat flowPDF DownloadLoading ..." @default.
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