Evaluation of coalbed methane potential of different reservoirs in western Guizhou and eastern Yunnan, China

Fuel - Tập 139 - Trang 257-267 - 2015
Song Li1,2, Dazhen Tang1, Zhejun Pan2, Hao Xu1, Lele Guo1
1Coal Reservoir Laboratory of National Engineering Research Center of Coalbed Methane Development & Utilization, China University of Geosciences, Beijing, 100083, PR China
2CSIRO Earth Science and Resource Engineering, Clayton, Victoria 3168, Australia

Tài liệu tham khảo

Luo, 2009, Economic evaluation of coalbed methane production in China, Energy Policy, 37, 3883, 10.1016/j.enpol.2009.06.049 Tao, 2012, Dynamic variation effects of coal permeability during the coalbed methane development process in the Qinshui Basin, China, Int J Coal Geol, 93, 16, 10.1016/j.coal.2012.01.006 Tang, 2004, Coalbed methane-bearing characteristics and reservoir physical properties of principal target areas in North China, Acta Geol Sinica (English edition), 78, 724 Xu, 2005, Analysis of pore system model and physical property of coal reservoir in the Qinshui Basin, Chinese Sci Bull, 50, 45 Li, 2013, Physical characterization of the pore-fracture system in coals, Northeastern China, Energy Explor Exploitation, 31, 267, 10.1260/0144-5987.31.2.267 Gu, 2002, Geological characteristics and prospect evaluation on coal-seam gas in East Yunnan and West Guizhou areas, Xinjiang Pet Geol, 23, 106 Li, 2012, The differences of physical properties of coal reservoirs and their origin mechanism between Zhijin and Panxian areas, Western Guizhou, China, Energy Explor Exploitation, 30, 661, 10.1260/0144-5987.30.4.661 Shao, 1994, Braided delta depositional system and coal accumulation during early Late Permian period in eastern Yunnan and western Guizhou, southwest China, Acta Sedimentologica Sinica, 12, 132 Gui, 2000, Structural characteristics of coalbed methane in East Yunnan and West Guizhou area, Yunnan Geol., 19, 321 Gao, 2009, CBM geology and exploring developing stratagem in Guizhou Province, China, Proc Earth Planet Sci, 1, 882, 10.1016/j.proeps.2009.09.137 Cuadrat, 2012, Relevance of the coal rank on the performance of the in situ gasification chemical-looping combustion, Chem Eng J, 195, 91, 10.1016/j.cej.2012.04.052 Muhammad, 2012, The thermal evolution of asphaltene-bound biomarkers from coals of different rank: a potential information resource during coal biodegradation, Int J Coal Geol, 107, 90, 10.1016/j.coal.2012.10.003 Zheng, 2012, Laboratory study of gas permeability and cleat compressibility for CBM/ECBM in Chinese coals, Energy Explor Exploitation, 30, 451, 10.1260/0144-5987.30.3.451 Tang, 2008, Control effect of coal metamorphic degree on physical properties of coal reservoirs, Nat Gas Ind, 28, 30 Chen, 2012, Characterization of chemical functional groups in macerals across different coal ranks via micro-FTIR spectroscopy, Int J Coal Geol, 104, 22, 10.1016/j.coal.2012.09.001 Pan, 2012, Modelling permeability for coal reservoirs: a review of analytical models and testing data, Int J Coal Geol, 92, 1, 10.1016/j.coal.2011.12.009 Gui, 2004, The selected area and evaluation of exploration target of seam gas in East Yunnan and West Guizhou, Yunnan Geol, 23, 410 Li, 2012, Porosity and permeability models for coals using low-field nuclear magnetic resonance, Energy Fuel, 26, 5005, 10.1021/ef300432m Lin, 2000, Characteristics of coalbed methane resources of China, Acta Geologicu Sinica (English ed.), 74, 706 Liu, 2009, Coal reservoir characteristics and coalbed methane resource assessment in Huainan and Huaibei coalfields, Southern North China, Int J Coal Geol, 79, 97, 10.1016/j.coal.2009.05.001 Saaty, 1985, Axiomatic foundation of the analytic hierarchy process, Manage Sci, 32, 841, 10.1287/mnsc.32.7.841 Saaty, 2003, Decision-making with the AHP: why is the principal eigenvector necessary, Eur J Operational Res, 145, 85, 10.1016/S0377-2217(02)00227-8 Crosdale, 1998, Coalbed methane sorption related to coal composition, Int J Coal Geol, 35, 147, 10.1016/S0166-5162(97)00015-3 Gamson, 1993, Coal microstructure and micro permeability and their effects on natural gas recovery, Fuel, 72, 87, 10.1016/0016-2361(93)90381-B Ходот, 1996 Yao, 2009, Fractal characterization of seepage-pores of coals from China: an investigation on permeability of coals, Comput Geosci, 35, 1159, 10.1016/j.cageo.2008.09.005 Sing, 1982, Reporting physisorption data for gas solid systems with special reference to the determination of surface-area and porosity, Pure Appl Chem, 54, 2201, 10.1351/pac198254112201 Groen, 2003, Pore size determination in modified micro- and mesoporous materials. Pitfalls and limitations in gas adsorption data analysis, Microporous Mesoporous Mater, 60, 1, 10.1016/S1387-1811(03)00339-1 Gensterblum, 2014, Molecular concept and experimental evidence of competitive adsorption of H2O, CO2 and CH4 on organic material, Fuel, 115, 581, 10.1016/j.fuel.2013.07.014 Prinz, 2005, Development of the micro- and ultramicroporous structure of coals with rank as deduced from the accessibility to water, Fuel, 84, 1645 Prinz, 2004, Development of the meso- and macroporous structure of coals with rank as analyzed with small angle neutron scattering and adsorption experiments, Fuel, 83, 547, 10.1016/j.fuel.2003.09.006 Burgess, 1989, Adsorption hysteresis in porous materials, Pure Appl Chem, 61, 1845, 10.1351/pac198961111845 Pan, 2010, Laboratory characterisation of coal reservoir permeability for primary and enhanced coalbed methane recovery, Int J Coal Geol, 82, 252, 10.1016/j.coal.2009.10.019 Shi, 2005, A model for changes in coalbed permeability during primary and enhanced methane recovery, SPE Reservoir Eval Eng, 8, 291, 10.2118/87230-PA Yao, 2010, Petrophysical characterization of coals by low-field nuclear magnetic resonance (NMR), Fuel, 89, 1371, 10.1016/j.fuel.2009.11.005 Busch, 2011, CBM and CO2-ECBM related sorption processes in coal: a review, Int J Coal Geol, 87, 49, 10.1016/j.coal.2011.04.011 Van Krevelen, 1993 Li, 2014, Influence and control of coal facies on physical properties of the coal reservoirs in western Guizhou and eastern Yunnan, China, Int J Oil, Gas Coal Technol, 8, 221, 10.1504/IJOGCT.2014.064837