[1]Demirbas A. Methane hydrates as potential energy resource: Part 1–Importance, resource and recovery facilities[J]. Energy Conversion and Management, 2010, 51(7): 1547-1561.
[2]BP. BP statistical review of world energy in 2019[EB/OL].(2019-07-30)[2020-06-06] https://www.bp.com/zh_cn/china/home/news/reports/statistical-review-2019.html.
[3]Konno Y, Fujii T, Sato A, et al. Key findings of the world’s first offshore methane hydrate production test off the coast of Japan: Toward future commercial production[J]. Energy & Fuels, 2017, 31(3): 2607-2616.
[4]Yamamoto K, Wang X X, Tamaki M, et al. The second offshore production of methane hydrate in the Nankai Trough and gas production behavior from a heterogeneous methane hydrate reservoir[J]. RSC Advances, 2019(45): 25987-26013.
[5]Kvenvolden K A, Claypool G E. Gas hydrates in oceanic sediment[R]. USGS Open-File Report, 1988, 88-216: 50.
[6]Dallimore S R, Collett T S, et al. Summary and implication of the Mallik 2002 gas hydrate production research well program [C]. Scientific Results from the Mallik 2002 Gas Hydrate Production Research Well Program, Mackenzie Delta, Northwest Territories, Canada. Geological Survey of Canada, Bulletin, 2005, 585: 1- 36.
[7]Li J, Ye J, Qin X, et al. The first offshore natural gas hydrate production test in South China Sea[J]. China Geology, 2018, 1(1): 5-16.
[8]Chen L, Feng Y, Okajima J, et al. Production behavior and numerical analysis for 2017 methane hydrate extraction test of Shenhu, South China Sea[J]. Journal of Natural Gas Science and Engineering, 2018(53): 55-66.
[9]Wang Y, Feng J C, Li X S, et al. Methane hydrate decomposition and sediment deformation in unconfined sediment with different types of concentrated hydrate accumulations by innovative experimental system[J]. Applied Energy, 2018(226): 916-923.
[10]Song B, Cheng Y, Yan C, et al. Seafloor subsidence response and submarine slope stability evaluation in response to hydrate dissociation[J]. Journal of Natural Gas Science and Engineering, 2019(65): 197-211. |