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dc.contributor.authorSvandal, Atleeng
dc.date.accessioned2006-03-02T13:36:08Z
dc.date.available2006-03-02T13:36:08Z
dc.date.issued2006-02-22eng
dc.identifier.isbn82-308-0116-9en_US
dc.identifier.urihttps://hdl.handle.net/1956/1118
dc.format.extent912019 byteseng
dc.format.mimetypeapplication/pdfeng
dc.language.isoengeng
dc.publisherThe University of Bergenen_US
dc.relation.haspartPaper 1: The Influence of Diffusion on Hydrate Growth Atle Svandal, Bjørn Kvamme, Laszlo Granasy, Tamas Pusztai Proceedings of the First International Conference on Diffusion in Solids and Liquids, DSL-2005, July 6-8, University of Aveiro, Portugal (p739-744) and Journal of Phase Equilibria and Diffusion, 26,5,(p534-538), 2005.en_US
dc.relation.haspartPaper 2: Reprinted from Journal of Chrystal Growth, 287, Atle Svandal, Bjørn Kvamme, Laszlo Granasy, Tamas Pusztai, Trygve Buanes, Joakim Hove, The Phase Field Theory Applied to CO2 and CH4 Hydrate, pp. 486-490, Copyright 2006, with permission from Elsevier.en_US
dc.relation.haspartPaper 3: Modelling the dissociation of carbon dioxide and methane hydrate using the Phase Field Theory Atle Svandal, Bjørn Kvamme, L´aszlo Granasy, Tamas Pusztai Lecture Series on Computer and Computational Sciences, Selected Papers from the International Conference on Computational Methods in Sciences and Engineering, ICCMSE-2005.en_US
dc.relation.haspartPaper 4: Modelling the dissociation of carbon dioxide and methane hydrate using the Phase Field Theory Atle Svandal, Bjørn Kvamme, Laszlo Granasy, Tamas Pusztai submitted to conference journals of ICCMSE-2005.en_US
dc.relation.haspartPaper 5: Thermodynamic properties and phase transitions in the H2O/CO2/CH4 system Atle Svandal, Tatyana Kuznetsova, Bjørn Kvamme to appear in Physical Chemistry Chemical Physics.en_US
dc.relation.haspartPaper 6: A multi-scale approach to gas hydrate formation. I. Homogeneous nucleation and growth, György Tegze, Tamas Pusztai, Gyula Toth, Laszlo Granasy, Atle Svandal, Tatyana Kuznetsova, Trygve Buanes, Tatyana Kuznetsova, Bjørn Kvamme, submitted to Journal of Chemical Physics.en_US
dc.relation.haspartPaper 7: Reprinted from Journal of Chrystal Growth, 287, Trygve Buanes, Bjørn Kvamme, Atle Svandal, Computer Simulation of CO2 Hydrate Growth, pp. 491-494, Copyright 2006, with permission from Elsevier.en_US
dc.relation.haspartPaper 8: Two approaches for Modelling Hydrate Growth Trygve Buanes, Bjørn Kvamme, Atle Svandal Lecture Series on Computer and Computational Sciences, Selected Papers from the International Conference on Computational Methods in Sciences and Engineering, ICCMSE-2005.en_US
dc.relation.haspartPaper 9: Two approaches for Modelling Hydrate Growth, Trygve Buanes, Bjørn Kvamme, Atle Svandal submitted to conference journals of ICCMSE-2005, Submitted to Elsevier Science.en_US
dc.relation.haspartPaper 10: Hydrate Sealing Effects related to storage of CO2 in cold reservoirs Bjørn Kvamme, Laszlo Granasy, Tatyana Kuznetsova, Atle Svandal, Trygve Buanes to appear in the Proceedings from the 7th International Conference on Greenhouse Gas Control Technologies(GHGT-7), September 5-9, 2004, Vancouver, BC, Canada, paper no 257,(p1811-1815).en_US
dc.relation.haspartPaper 11: Phase field approaches to the kinetic modeling of hydrate phase transitions. Bjørn Kvamme, Atle Svandal, Trygve Buanes, Tatyana Kuznetsova, Laszlo Granasy. Invited and reviewed chapter in a book related to AAPG. Hedberg Research Conference Natural Gas Hydrates: Energy Resource Potential and Associated Geologic Hazards, September 12-16, 2004, Vancouver, BC, Canada, submitted October 2005en_US
dc.relation.haspartPaper 12: Flux of CO2 through hydrate sealing of CO2, Atle Svandal, Bjørn Kvamme, extended abstract submitted to the 8th International Conference on Greenhouse Gas Control Technologies(GHGT-8), 2006.en_US
dc.titleModeling hydrate phase transitions using mean-field approachesen_US
dc.typeDoctoral thesis
dc.subject.nsiVDP::Matematikk og Naturvitenskap: 400nob
dc.subject.nsiVDP::Matematikk og Naturvitenskap: 400::Fysikk: 430nob


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