Depressurized dissociation of methane-hydrate-bearing natural cores with low permeability

Author:

Oyama Hiroyuki,Konno Yoshihiro,Suzuki Kiyofumi,Nagao Jiro

Funder

Ministry of Economy, Trade and Industry

Publisher

Elsevier BV

Subject

Applied Mathematics,Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry

Reference19 articles.

1. A review of the gas hydrates, geology, and biology of the Nankai Trough;Colwell;Chem. Geol.,2004

2. Predicting gas generation by depressurization of gas hydrates where the sharp-interface assumption is not valid;Gerami;J. Pet. Sci. Eng.,2007

3. Compositions, enthalpies of dissociation, and heat capacities in the range 85 to 270 k for clathrate hydrates of methane, ethane, and propane, and enthalpy of dissociation of isobutane hydrate, as determined by a heat-flow calorimeter;Handa;J. Chem. Thermodyn.,1986

4. Phase behavior in systems containing clathrate hydrates: a review;Holder;Rev. Chem. Eng.,1988

5. Kamata, Y., Ebinuma, T., Omura, R., Minagawa, H., Narita, H., 2005. Decomposition behavior of artificial methane hydrate sediment by depressurization method. In: Proceedings of ICGH 5. Paper ref. 3016.

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