Methane hydrate formation and dissociation in a partially saturated core-scale sand sample

We performed a series of experiments to provide data for validating numerical models of gas hydrate behavior in porous media. Methane hydrate was formed and dissociated under various conditions in a large X-ray transparent pressure vessel, while pressure and temperature were monitored. In addition,...

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Veröffentlicht in:Journal of petroleum science & engineering 2007-03, Vol.56 (1), p.108-126
Hauptverfasser: Kneafsey, Timothy J., Tomutsa, Liviu, Moridis, George J., Seol, Yongkoo, Freifeld, Barry M., Taylor, Charles E., Gupta, Arvind
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Sprache:eng
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Zusammenfassung:We performed a series of experiments to provide data for validating numerical models of gas hydrate behavior in porous media. Methane hydrate was formed and dissociated under various conditions in a large X-ray transparent pressure vessel, while pressure and temperature were monitored. In addition, X-ray computed tomography (CT) was used to determine local density changes during the experiment. The goals of the experiments were to observe changes occurring due to hydrate formation and dissociation, and to collect data to evaluate the importance of hydrate dissociation kinetics in porous media. In the series of experiments, we performed thermal perturbations on the sand/water/gas system, formed methane hydrate, performed thermal perturbations on the sand/hydrate/water/gas system resulting in hydrate formation and dissociation, formed hydrate in the resulting partially dissociated system, and dissociated the hydrate by depressurization coupled with thermal stimulation. Our CT work shows significant water migration in addition to possible shifting of mineral grains in response to hydrate formation and dissociation. The extensive data including pressure, temperatures at multiple locations, and density from CT data is described.
ISSN:0920-4105
1873-4715
DOI:10.1016/j.petrol.2006.02.002