Nano to Micro Scale Modeling of Hydrate Phase Transition Kinetics
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Består avPaper I: M. Qasim, B. Kvamme, and K. Baig, Phase field theory modeling of CH4/CO2 gas hydrates in gravity fields, International Journal of Geology, Volume 5, Issue 2, 2011, pp. 48-52. http://hdl.handle.net/1956/16417
Paper II: M. Qasim, B. Kvamme and K. Baig, Modeling Dissociation and Reformation of Methane and Carbon Dioxide Hydrate using Phase Field Theory with implicit hydrodynamics, In Proceedings from the 7th international conference on gas hydrate (ICGH7), Edinburgh, Scotland, July 17, 2011- July 21, 2011, 9 pages. Full-text not available.
Paper III: M. Qasim, K. Baig and B. Kvamme, Phase Field Theory modeling of Phase transitions involving hydrate, In Proceedings from the 9th international conference on Heat and Mass transport, Harvard, Cambridge, USA, January 25-27, 2012, pp. 222-228. Full-text not available.
Paper IV: B. Kvamme, K. Baig, M. Qasim and J. Bauman, Thermodynamics and Kinetic Modeling of CH4/CO2 Hydrates Phase transitions, International Journal of Energy and Environment, Volume 7, Issue 1, 2013, pp. 1-8. http://hdl.handle.net/1956/16355
Paper V: M. Qasim, K. Baig, B. Kvamme and J. Bauman, Mix Hydrate formation by CH4-CO2 exchange using Phase Field Theory with implicit Thermodynamics, International Journal of Energy and Environment, Volume 6, Issue 5, 2012, pp. 479-487. http://hdl.handle.net/1956/16416
Paper VI: B. Kvamme, M. Qasim, K. Baig and P. H. Kivelä, J. Bauman, Hydrate phase transition kinetics from Phase Field Theory with implicit hydrodynamics and heat transport, International Journal of Greenhouse Gas Control, Volume 29, 2014, pp. 263-278. https://doi.org/10.1016/j.ijggc.2014.08.003
Paper VII: K. Baig, B. Kvamme, T. Kuznetsova, and J. Bauman, Impact of water film thickness on kinetic rate of mixed hydrate formation during injection of CO2 into CH4 hydrate, AIChE Journal, Volume 61, Issue 11, 2015, pp. 3944–3957. https://doi.org/10.1002/aic.14913