Matches in SemOpenAlex for { <https://semopenalex.org/work/W2079730275> ?p ?o ?g. }
- W2079730275 abstract "PreviousNext No AccessUnconventional Resources Technology Conference, Denver, Colorado, 12-14 August 2013Stress-Dependent Permeability Anisotropy and Wettability of Shale ResourcesAuthors: Mehdi MokhtariAdel A. AlqahtaniAzra N. TutuncuXiaolong YinMehdi MokhtariColorado School of MinesSearch for more papers by this author, Adel A. AlqahtaniColorado School of MinesSearch for more papers by this author, Azra N. TutuncuColorado School of MinesSearch for more papers by this author, and Xiaolong YinColorado School of MinesSearch for more papers by this authorhttps://doi.org/10.1190/urtec2013-283 SectionsAboutPDF/ePub ToolsAdd to favoritesDownload CitationsTrack CitationsPermissions ShareFacebookTwitterLinked InRedditEmail Abstract URTeC 1555068 Intrinsic anisotropy due to layering as well as induced anisotropy due to fractures play critical role in fluid flow in organic-rich shales. In this paper, we characterize the impact of natural and induced fractures on permeability anisotropy utilizing various resolution CT-scans and present the effect of stress on the permeability of such fractured reservoirs. The effect of shale layering on fluid flow is also discussed. Wettability is another key factor in determining the fluid flow and recovery efficiency in shale reservoirs. We investigated the wettability of several shale samples from Eagle Ford, Mancos, Green River, Bakken and Niobrara shale plays. The effects of total organic carbon and maturity on contact angle in these shale formations are presented. Keywords: anisotropy, permeability, layered, fluid, fractures, gasPermalink: https://doi.org/10.1190/urtec2013-283FiguresReferencesRelatedDetailsCited BySurface Modification of Proppant Using Hydrophobic Coating To Enhance Long-Term Production5 October 2020 | SPE Production & Operations, Vol. 36, No. 01Complexities Driving Wettability Evaluation of Shales toward Unconventional Approaches: A Comprehensive Review4 January 2021 | Energy & Fuels, Vol. 35, No. 2Stochastic Apparent Permeability Model of Shale Oil Considering Geological ControlJilong Xu, Yuliang Su, Wendong Wang, and Han Wang30 December 2020Spontaneous Imbibition in Shales under One-End-Open Boundary Condition: Effect of Wettability, Porosity, and Bedding OrientationAsiman Saidzade, Ning Liu, Mehdi Mokhtari, Prathmesh Naik Parrikar, and Philip Bertrand Wortman30 December 2020Impacts of Competitive Water Adsorption of Kerogen and Clay Minerals on Wettability of Organic-Rich Mudrocks22 May 2020 | SPE Reservoir Evaluation & Engineering, Vol. 23, No. 04Investigating the Effects of Stress Creep and Effective Stress Coefficient on Stress-Dependent Permeability Measurements of Shale RockJournal of Petroleum Science and EngineeringComparing the permeability of dry and moisturized crushed shales determined by the dynamic process data of methane adsorptionJournal of Hydrology, Vol. 590A Review on Factors Influencing the Rock Mechanics of the Gas Bearing FormationsJournal of Natural Gas Science and Engineering, Vol. 80Multiscale Modeling of Gas Transport in Shale Matrix: An Integrated Study of Molecular Dynamics and Rigid-Pore-Network Model27 February 2020 | SPE Journal, Vol. 25, No. 03Mechanism of Ultra-Low Water Recovery Rate with High Productivity in Fuling Gas Shale FiledDunqing Liu, Hongkui Ge, Yinghao Shen, Jing Li, and Qingyu Li10 February 2020Wetting Behavior of Shale Rocks and Its Relationship to Oil Composition12 November 2019 | Energy & Fuels, Vol. 33, No. 12A review of analytical and semi-analytical fluid flow models for ultra-tight hydrocarbon reservoirsFuel, Vol. 256Quantifying the Impacts of Competitive Water Adsorption of Kerogen and Clay Minerals on Wettability of Organic-Rich MudrocksArchana Jagadisan and Zoya Heidari16 October 2019Unconventional Reservoir Geomechanics14 June 2019 | , Vol. 1Impacts of Geochemical Properties on Wettability of Kerogen and Organic-rich MudrocksArchana Jagadisan and Zoya Heidari28 September 2018Effect of microscale compressibility on apparent porosity and permeability in shale gas reservoirsInternational Journal of Heat and Mass Transfer, Vol. 120Wettability and Capillary Imbibition in Shales; Analytical and Data-Driven Analysis13 March 2018Experimental Study of Permeability Decline in Tight Formations During Long-Term Depletion5 May 2016Contact Angle Measurements on Conventional and Unconventional Reservoir CoresTadesse Weldu Teklu*, Waleed Alameri, Hossein Kazemi, and Ramona M. Graves12 August 2015The role of hydraulic fracture geometry and conductivity profile, unpropped zone conductivity and fracturing fluid flowback on production performance of shale oil wellsJournal of Unconventional Oil and Gas Resources, Vol. 9Adsorbed Gas Surface Diffusion and Bulk Gas Transport in Nanopores of Shale Reservoirs with Real Gas Effect-Adsorption-Mechanical Coupling23 February 2015Matrix-Fracture Interface Cleanup in Unconventional Shale Reservoirs11 October 2015Measurement of Shale Anisotropic Permeability and Its Impact on Shale Gas Production9 November 2015Niobrara Maturity Goes Up, Resistivity Goes Down; What's Going On?S. Cumella* and M. Al Duhailan24 September 2014Coupled Geomechanics and Pore Confinement Effects for Modeling Unconventional Shale ReservoirsY. Xiong*, P. Winterfeld, and Y. Wu24 September 2014Effect of Mineralogy and Petrophysical Characteristics on Acoustic and Mechanical Properties of Organic Rich ShaleAdel A. Alqahtani, Mehdi Mokhtari, Azra N. Tutuncu, and Steve Sonnenberg26 September 2013Impacts of Stress, Natural and Induced Fractures on Mechanical Properties of Organic-Rich ShalesMehdi Mokhtari, Adel A. Alqahtani, and Azra N. Tutuncu26 September 2013 Unconventional Resources Technology Conference, Denver, Colorado, 12-14 August 2013ISSN (online):2159-6832Copyright: 2013 Pages: 1229 publication data© 2013 Published in electronic format with permission by the Society of Exploration Geophysicists, American Association of Petroleum Geologists, and Society of Petroleum EngineersPublisher:Unconventional Resources Technology ConferenceSociety of Exploration Geophysicists HistoryPublished: 26 Sep 2013 CITATION INFORMATION Mehdi Mokhtari, Adel A. Alqahtani, Azra N. Tutuncu, and Xiaolong Yin, (2013), Stress-Dependent Permeability Anisotropy and Wettability of Shale Resources, SEG Global Meeting Abstracts : 2713-2728. https://doi.org/10.1190/urtec2013-283 Plain-Language Summary KeywordsanisotropypermeabilitylayeredfluidfracturesgasPDF DownloadLoading ..." @default.
- W2079730275 created "2016-06-24" @default.
- W2079730275 creator A5006781163 @default.
- W2079730275 creator A5019934716 @default.
- W2079730275 creator A5031790048 @default.
- W2079730275 creator A5061111078 @default.
- W2079730275 date "2013-08-14" @default.
- W2079730275 modified "2023-09-26" @default.
- W2079730275 title "Stress-Dependent Permeability Anisotropy and Wettability of Shale Resources" @default.
- W2079730275 cites W1973826229 @default.
- W2079730275 cites W1982233320 @default.
- W2079730275 cites W1994278855 @default.
- W2079730275 cites W2019259009 @default.
- W2079730275 cites W2024446193 @default.
- W2079730275 cites W2052688777 @default.
- W2079730275 cites W2052773980 @default.
- W2079730275 cites W2077517698 @default.
- W2079730275 cites W2078204385 @default.
- W2079730275 cites W2078681848 @default.
- W2079730275 cites W2081280681 @default.
- W2079730275 cites W2082502138 @default.
- W2079730275 cites W2085294799 @default.
- W2079730275 cites W2092952629 @default.
- W2079730275 cites W2149736938 @default.
- W2079730275 cites W2154128748 @default.
- W2079730275 cites W2166571187 @default.
- W2079730275 cites W2180308572 @default.
- W2079730275 cites W4238652496 @default.
- W2079730275 doi "https://doi.org/10.1190/urtec2013-283" @default.
- W2079730275 hasPublicationYear "2013" @default.
- W2079730275 type Work @default.
- W2079730275 sameAs 2079730275 @default.
- W2079730275 citedByCount "46" @default.
- W2079730275 countsByYear W20797302752013 @default.
- W2079730275 countsByYear W20797302752014 @default.
- W2079730275 countsByYear W20797302752015 @default.
- W2079730275 countsByYear W20797302752016 @default.
- W2079730275 countsByYear W20797302752017 @default.
- W2079730275 countsByYear W20797302752018 @default.
- W2079730275 countsByYear W20797302752019 @default.
- W2079730275 countsByYear W20797302752020 @default.
- W2079730275 countsByYear W20797302752021 @default.
- W2079730275 countsByYear W20797302752022 @default.
- W2079730275 crossrefType "proceedings-article" @default.
- W2079730275 hasAuthorship W2079730275A5006781163 @default.
- W2079730275 hasAuthorship W2079730275A5019934716 @default.
- W2079730275 hasAuthorship W2079730275A5031790048 @default.
- W2079730275 hasAuthorship W2079730275A5061111078 @default.
- W2079730275 hasConcept C120665830 @default.
- W2079730275 hasConcept C120882062 @default.
- W2079730275 hasConcept C121332964 @default.
- W2079730275 hasConcept C127313418 @default.
- W2079730275 hasConcept C134514944 @default.
- W2079730275 hasConcept C151730666 @default.
- W2079730275 hasConcept C153127940 @default.
- W2079730275 hasConcept C159985019 @default.
- W2079730275 hasConcept C176055353 @default.
- W2079730275 hasConcept C185592680 @default.
- W2079730275 hasConcept C192562407 @default.
- W2079730275 hasConcept C41625074 @default.
- W2079730275 hasConcept C55493867 @default.
- W2079730275 hasConcept C59822182 @default.
- W2079730275 hasConcept C6556556 @default.
- W2079730275 hasConcept C78762247 @default.
- W2079730275 hasConcept C85725439 @default.
- W2079730275 hasConcept C86803240 @default.
- W2079730275 hasConceptScore W2079730275C120665830 @default.
- W2079730275 hasConceptScore W2079730275C120882062 @default.
- W2079730275 hasConceptScore W2079730275C121332964 @default.
- W2079730275 hasConceptScore W2079730275C127313418 @default.
- W2079730275 hasConceptScore W2079730275C134514944 @default.
- W2079730275 hasConceptScore W2079730275C151730666 @default.
- W2079730275 hasConceptScore W2079730275C153127940 @default.
- W2079730275 hasConceptScore W2079730275C159985019 @default.
- W2079730275 hasConceptScore W2079730275C176055353 @default.
- W2079730275 hasConceptScore W2079730275C185592680 @default.
- W2079730275 hasConceptScore W2079730275C192562407 @default.
- W2079730275 hasConceptScore W2079730275C41625074 @default.
- W2079730275 hasConceptScore W2079730275C55493867 @default.
- W2079730275 hasConceptScore W2079730275C59822182 @default.
- W2079730275 hasConceptScore W2079730275C6556556 @default.
- W2079730275 hasConceptScore W2079730275C78762247 @default.
- W2079730275 hasConceptScore W2079730275C85725439 @default.
- W2079730275 hasConceptScore W2079730275C86803240 @default.
- W2079730275 hasLocation W20797302751 @default.
- W2079730275 hasOpenAccess W2079730275 @default.
- W2079730275 hasPrimaryLocation W20797302751 @default.
- W2079730275 hasRelatedWork W2033255006 @default.
- W2079730275 hasRelatedWork W2064819822 @default.
- W2079730275 hasRelatedWork W2089760272 @default.
- W2079730275 hasRelatedWork W2800625196 @default.
- W2079730275 hasRelatedWork W3088665325 @default.
- W2079730275 hasRelatedWork W3098491008 @default.
- W2079730275 hasRelatedWork W3209031726 @default.
- W2079730275 hasRelatedWork W3214901250 @default.
- W2079730275 hasRelatedWork W326329209 @default.
- W2079730275 hasRelatedWork W4224275989 @default.
- W2079730275 isParatext "false" @default.
- W2079730275 isRetracted "false" @default.
- W2079730275 magId "2079730275" @default.