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Analysis of Decomposition for Structure I Methane Hydrate by Molecular Dynamics Simulation
Authors:Na Wei  Wan-Tong Sun  Ying-Feng Meng  An-Qi Liu  Shou-Wei Zhou  Ping Guo  Qiang Fu  Xin Lv
Institution:1.State Key Laboratory of Oil and Gas Reservoir Geology and Exploitation,Southwest Petroleum University,Chengdu,China;2.Geological Explorations and Development Institute,Chuan Qing Drilling Engineering Company Limited,Chengdu,China;3.CNOOC,Beijing,China;4.CNOOC Research Institutes,Beijing,China
Abstract:Under multi-nodes of temperatures and pressures, microscopic decomposition mechanisms of structure I methane hydrate in contact with bulk water molecules have been studied through LAMMPS software by molecular dynamics simulation. Simulation system consists of 482 methane molecules in hydrate and 3027 randomly distributed bulk water molecules. Through analyses of simulation results, decomposition number of hydrate cages, density of methane molecules, radial distribution function for oxygen atoms, mean square displacement and coefficient of diffusion of methane molecules have been studied. A significant result shows that structure I methane hydrate decomposes from hydrate-bulk water interface to hydrate interior. As temperature rises and pressure drops, the stabilization of hydrate will weaken, decomposition extent will go deep, and mean square displacement and coefficient of diffusion of methane molecules will increase. The studies can provide important meanings for the microscopic decomposition mechanisms analyses of methane hydrate.
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