Significant advancement in geological theories and new discoveries of natural gas in China since the 11th Five-Year Plan
Tài liệu tham khảo
Wei, 2017, New research progress of natural gas geological theories in China during the 12th Five-Year Plan period, Nat. Gas. Ind., 37, 1
Du, 2016, Oil and gas exploration and discovery of PetroChina Company Limited during the 12th Five-Year plan and the prospect during the 13th Five-Year plan, China Petrol. Explor., 21, 1
Feng, 2016, Oil and gas exploration of China Petroleum and chemical corporation during the 12th five-year plan and the prospect during the 13th five-year plan, China Petrol. Explor., 21, 1
Zhu, 2016, Oil and gas exploration progress of China national offshore oil corporation during the 12th Five-Year Plan and the prospect during the 13th Five-Year Plan, China Petrol. Explor., 21, 1
He, 2014, PetroChina's oil and gas exploration results, new geological theories and technological achievements since 11th Five-Year plan period, China Petrol. Explor., 19, 1
Dai, 2009, Major developments of coal-formed gas exploration in the last 30 years in China, Petrol. Explor. Dev., 36, 264, 10.1016/S1876-3804(09)60125-7
Wei, 2012, New progress in the studies on basic geological theories of natural gas in China, Nat. Gas. Ind., 32, 6
Jia, 2015, Research processes and main development directions of deep hydrocarbon geological theories, Acta Pet. Sin., 36, 1457
Li, 2018, New progress in basic natural gas geological theories and future exploration targets in China, Nat. Gas. Ind., 38, 37
Zhu, 2012, New progress of marine hydrocarbon geological theory in China, Acta Petrol. Sin., 28, 722
Li, 2006, New development in geological study on China's natural gas, Nat. Gas. Ind., 26, 11
Dai, 2008, Significances of studies on natural gas geology and geochemistry for natural gas industry in China, Petrol. Explor. Dev., 35, 513, 10.1016/S1876-3804(09)60085-9
Dai, 2005, Geochemistry and occurrence of inorganic gas accumulations in Chinese sedimentary basins, Org. Geochem., 36, 1664, 10.1016/j.orggeochem.2005.08.007
Li, 2017, Model of hydrocarbon gases generation from typical brown coal with transitional organic matter type of Ⅱ2-Ⅲ, J. China Inst. Min. Technol., 46, 328
Li, 2007, Characteristics and models of gaseous hydrocarbon generation from Triassic-Jurassic source rocks in Kuqa Depression, Coal Geol. Explor., 35, 18
Wang, 2010, Hydrocarbon generating potential and mode of late permian coal from panxian, Guizhou province, Acta Sci. Nauralium Univ. Pekin., 46, 103
Wang, 2012, The simulation experiment on gas-generating potential of over mature source rocks, Acta Sedimentol. Sin., 30, 1172
Li, 2015, Evaluation on occluded hydrocarbon in deep-ultra deep ancient source rocks and its cracked gas resources, Nat. Gas. Ind., 35, 9
Li, 2018, Modeling of the whole hydrocarbon-generating process of sapropelic source rock, Petrol. Explor. Dev., 45, 445, 10.1016/S1876-3804(18)30051-X
Xie, 2016, Experimental research on the potential of sapropelic kerogen cracking gas and discrimination of oil cracking gas, Nat. Gas Geosci., 27, 1057
Zhao, 2005, Successive generation of natural gas from organic materials and its significance in future exploration, Petrol. Explor. Dev., 32, 1
Zhao, 2011, Futher discussion on the connotation and significance of the natural gas relaying generation model from organic materials, Petrol. Explor. Dev., 38, 129, 10.1016/S1876-3804(11)60021-9
Guan, 1997, Generation and evolution model of biogenic gas, Petrol. Explor. Dev., 18, 31
Kong, 2008, Geochemical characteristics of gas source rock and generation-evolution model of biogenic gas in Hetao Basin, Nat. Gas Geosci., 19, 238
Zhang, 2005, Advances in biogenic gas studies and play strategies, Petrol. Explor. Dev., 32, 90
Zhang, 2013, Time-limit and yield of natural gas generation from different origins and their effects on forecast of deep oil and gas resources, Acta Pet. Sin., 34, 41
Ding, 2013, Biogas forming mechanism and geochemical characteristics of its source rock, Nat. Gas Geosci., 14, 402
Dai, 1992, Identification of different alkane gas, Sci. China Chem., 35, 1246
Song, 2005, Origin and identification of natural gases, Petrol. Explor. Dev., 32, 24
Li, 2017, New indexes and charts for genesis identification of multiple natural gases, Petrol. Explor. Dev., 44, 503, 10.1016/S1876-3804(17)30062-9
Prinzhofer, 1995, Genetic and post-genetic molecular and isotopic fractionations in natural gases, Chem. Geol., 126, 281, 10.1016/0009-2541(95)00123-9
Behar, 1992, Experimental simulation in a confined system and kinetic modelling of kerogen and oil cracking, Org. Geochem., 19, 173, 10.1016/0146-6380(92)90035-V
Jiang, 2017, Genesis and distribution of Paleogene oil type gases in the northern Dongpu Depression, J. China Univ. Petrol., 41, 42
Zhang, 2015, The discussion of nature gas origin in Hutubi and Huoerguosi, China Min. Mag., 24, 108
Hu, 2008, Preliminary study on the origin identification of natural gas by the parameters of light hydrocarbon, Sci. China Earth Sci., 51, 131, 10.1007/s11430-008-5017-x
Hu, 2004, The comparision of gas generation potential and model between two different thermal simulation systems, Acta Sedimentol. Sin., 22, 718
Du, 2014, Theoretical and technical innovations in strategic discovery of a giant gas field in Cambrian Longwangmiao formation of central Sichuan paleo-uplift, Sichuan Basin, Petrol. Explor. Dev., 41, 268, 10.1016/S1876-3804(14)60035-5
Wei, 2015, Characteristics and accumulation modes of large gas reservoirs in Sinian-Cambrian of Gaoshiti-Moxi region, Sichuan Basin, Acta Pet. Sin., 36, 1
Wei, 2015, Geological characteristics of the Sinian-early cambrian intracratonic rift, Sichuan Basin, Nat. Gas. Ind., 35, 24
Wei, 2017, Characteristics of source rocks, resource potential and exploration direction of Sinian and Cambrian in Sichuan Basin, Nat. Gas Geosci., 28, 1
Wei, 2015, Tectonic features of Gaoshiti-Moxi paleo-uplift and its controls on the formation of a giant gas field, Sichuan Basin, SW China, Petrol. Explor. Dev., 42, 257, 10.1016/S1876-3804(15)30018-5
Zou, 2014, Formation, resource potential and exploration discovery of the Sinian-Cambrian giant gas field in Sichuan Basin, Petrol. Explor. Dev., 41, 278, 10.1016/S1876-3804(14)60036-7
Zhang, 2015, Caprock characteristics and sealing ability evaluation of Sinian-Cambrian gas reservoirs in Gaoshiti-Moxi area, Sichuan Basin, Nat. Gas Geosci., 26, 796
Zhang, 2018, Formation mechanism of tight sandstone gas in areas of low hydrocarbon generation intensity: a case study of the Upper Paleozoic in north Tianhuan Depression in Ordos Basin, NW China, Petrol. Explor. Dev., 45, 73, 10.1016/S1876-3804(18)30007-7
Wei, 2016, New progress of tight sand gas accumulation theory and favorable exploration zones in China, Nat. Gas Geosci., 27, 199
Zhao, 2012, Quasi-continuous accumulation model of large tight sandstone gas field in Ordos Basin, Acta Pet. Sin., 32, 37
Zhao, 2013, Hydrocarbon accumulation patterns of large tight oil and gas fields, Oil Gas Geol., 34, 573
Lu, 2018, Forming condition and mechanism of highly effective deep tight sandstone gas reservoir in Kuqa foreland basin, Acta Pet. Sin., 39, 365
Wang, 2016, Geological understanding on the formation of large-scale ultra-deep oil-gas field in Kuqa foreland basin, China Petrol. Explor., 21, 37
Wang, 2013, Exploration and discovery of large and deep subsalt gas fields in Kuqa foreland thrust belt, China Petrol Explor, 18, 1
Li, 2017, Mechanisms for gas accumulation and enrichment in tight sandstone reservoir in rift basins: cases from the Songliao Basin and the Bohai Bay, Oil Gas Geol., 38, 1005
Guo, 2014, Cases of discovery and exploration of marine fields in China (Part 16): Yuanba gas field in Sichuan Basin, Mar. Orig. Petrol. Geol., 19, 57
Guo, 2011, Basic characteristics of deep reef-bank reservoirs and major controlling factors of gas pools in the Yuanba gas field, Nat. Gas. Ind., 31, 12
Ma, 2014, Characteristics and formation mechanisms of reef-shoal carbonate reservoirs of Changxing-Feixianguan formations, Yuanba gas field, Acta Pet. Sin., 35, 1001
Fan, 2014, Genetic analysis of high-yield wells of ultra-deep reef-shoal lithologic gas reservoirs: a case study of reef-shoal facies reservoirs in Changxing Formation, Yuanba area, northeastern Sichuan Basin, Petrol. Geol. Exp., 36, 70
Zhao, 2014, Conditions of giant volcanic gas field in the deep fault depressions of Songliao Basin and its exploration practice, Geoscience, 28, 592
Lin, 2013, Enrichment and exploration prospects in deep volcanic gas reservoirs in Songliao Basin, Xinjing Pet. Geol., 34, 174
Xie, 2012, Main controlling factors and formation models of natural gas reservoirs with high-temperature and overpressure in Yinggehai Basin, Acta Pet. Sin., 33, 601
Xie, 2015, High temperature and high pressure gas enrichment condition, distribution law and accumulation model in central diaper zone of Yinggehai Basin, China Offshore Oil Gas, 27, 1
Zhang, 2015, The accumulation process and model of overpressured low permeability gas pool in the north of South China Sea, Nat. Gas Geosci., 26, 1679
Xu, 2016, Hydrocarbon source condition and accumulation mechanism of natural gas in deepwater area of Qiongdongnan Basin, northern South China Sea, Nat. Gas Geosci., 27, 1985
Xu, 2014, Characteristics and key controlling factors of natural gas accumulation in the central submarine canyon, Qiongdongnan Basin, Acta Geol. Sin., 88, 1741
Huang, 2017, Condensate origin and hydrocarbon accumulation mechanism of the deepwater giant gas field in western South China Sea: a case study of Lingshui17-2 gas field in Qiongdongnan Basin, South China Sea, Petrol. Explor. Dev., 44, 380, 10.1016/S1876-3804(17)30047-2
Yang, 2014, Accumulation condition and model of gas reservoir in central caynon in deepwater area of northern South China Sea, Acta Geol. Sin., 88, 2141
Zou, 2015, Shale gas in China: characteristics, challenges and prospects (Ⅰ), Petrol. Explor. Dev., 42, 689, 10.1016/S1876-3804(15)30072-0
Zou, 2016, Shale gas in China: characteristics, challenges and prospects (II), Petrol. Explor. Dev., 43, 166, 10.1016/S1876-3804(16)30022-2
Sun, 2018, Low-rank coalbed methane gas pooling in China: characteristics and exploration orientation, Nat. Gas. Ind., 38, 10