Re-recognition of "unconventional" in unconventional oil and gas

被引:0
|
作者
Jiao F. [1 ]
机构
[1] China National Petroleum Corporation, Beijing
关键词
Fine grain deposition; Hydrocarbon accumulation dynamics; Organic matter; Shale oil and gas; Sichuan Basin; Theoretical connotation; Unconventional oil and gas; Wufeng-Longmaxi Formations;
D O I
10.11698/PED.2019.05.01
中图分类号
学科分类号
摘要
Taking the Wufeng-Longmaxi shale gas in the Sichuan Basin as a typical example, based on the new progress in exploration and development, this study re-examines the "unconventional" of unconventional oil and gas from two aspects: oil and gas formation and accumulation mechanisms, and main features of oil and gas layers. The oil and gas of continuous accumulation and distribution from integrated source and reservoir is unconventional oil and gas, and the study focusing on shale oil and gas in comparison with conventional oil and gas has made progress in five aspects: (1) Unconventional oil and gas have source-reservoir-in-one and in-situ accumulation; according to the theory of continuous oil and gas accumulation, the accumulation power of oil and gas is overpressure and diffusion; for conventional oil and gas, the source and reservoir are different formations, the trapping accumulation is its theoretical foundation, and the accumulation power is characterized by buoyancy and capillary force. (2) The unconventional oil and gas reservoirs are mainly formed in the low-energy oxygen-anaerobic environment, dominantly semi-deep to deep shelf facies and the semi-deep to deep lake facies, simple in lithology, rich in organic matter and clay minerals; conventional oil and gas mainly occur in coarse-grained sedimentary rocks formed in high-energy waters with complex lithology. (3) The unconventional oil and gas reservoirs have mainly nano-scale pores, of which organic matter pores take a considerable proportion; conventional oil and gas reservoirs mainly have micron-millimeter pores and no organic matter pores. (4) Unconventional shale oil and gas reservoirs have oil and gas in uniform distribution, high oil and gas saturation, low or no water content, and no obvious oil and gas water boundary; conventional oil and gas reservoirs have oil and gas of complex properties, moderate oil and gas saturation, slightly higher water content, and obvious oil, gas and water boundaries. (5) Organic-rich shale is the main target of unconventional oil and gas exploration; the sedimentary environment controls high organic matter abundance zone and organic matter content controls oil and gas abundance; positive structure and high porosity control the yields of shale wells; bedding and fracture development are important factors deciding high yield. © 2019, The Editorial Board of Petroleum Exploration and Development. All right reserved.
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页码:803 / 810
页数:7
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  • [1] Zhang H., Fang C., Gao X., Et al., Petroleum Geology, (1999)
  • [2] Zou C., Tao S., Hou L., Et al., Unconventional Petroleum Geology, (2014)
  • [3] Zou C., Tao S., Yuan X., Et al., Global importance of "continuous" petroleum reservoirs: Accumulation, distribution and evaluation, Petroleum Exploration and Development, 36, 6, pp. 669-682, (2009)
  • [4] Schmoker J.W., Method for assessing continuous type (unconventional) hydrocarbon accumulations, U.S, (1995)
  • [5] Schmoker J.W., National assessment report of USA oil and gas resources, (1995)
  • [6] Zhang J., Xue H., Zhang D., Et al., Shale gas and its accumulation mechanism, Geoscience, 17, 4, (2003)
  • [7] Jin Z., Zhang J., Exploration strategy for deep basin gas reservoirs, Petroleum Exploration and Development, 26, 1, pp. 4-5, (1999)
  • [8] Zhang J., Advances in research on root-edge gas (deep basin gas), Geoscience, 17, 2, (2003)
  • [9] Wu H., Liang X., Xiang C., Et al., Characteristics of petroleum accumulation in syncline of the Songliao basin and discussion on its accumulation mechanism, SCIENCE CHINA Earth Sciences, 50, 5, pp. 702-709, (2007)
  • [10] Law B.E., Curtis J.B., Introduction to unconventional petroleum systems, AAPG Bulletin, 86, 11, pp. 1851-1852, (2002)