Types and resource potential of continental shale oil in China and its boundary with tight oil

被引:312
作者
Zhao Wenzhi [1 ]
Hu Suyun [1 ]
Hou Lianhua [1 ]
Yang Tao [1 ]
Li Xin [1 ]
Guo Bincheng [1 ]
Yang Zhi [1 ]
机构
[1] PetroChina, Res Inst Petr Explorat & Dev, Beijing 100083, Peoples R China
关键词
shale oil; medium-high maturity; low-medium maturity; resource potential; tight oil; boundary; shale oil revolution; ORDOS BASIN; MEMBER;
D O I
10.1016/S1876-3804(20)60001-5
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Continental shale oil has two types, low-medium maturity and medium-high maturity, and they are different in terms of resource environment, potential, production methods and technologies, and industrial evaluation criteria. In addition, continental shale oil is different from the shale oil and tight oil in the United States. Scientific definition of connotations of these resource types is of great significance for promoting the exploration of continental shale oil from "outside source" into "inside source" and making it a strategic replacement resource in the future. The connotations of low-medium maturity and medium-high maturity continental shale oils are made clear in this study. The former refers to the liquid hydrocarbons and multiple organic matter buried in the continental organic-rich shale strata with a burial depth deeper than 300 m and a R-o value less than 1.0%. The latter refers to the liquid hydrocarbons present in organic-rich shale intervals with a burial depth that in the "liquid window" range of the Tissot model and a Ro value greater than 1.0%. The geological characteristics, resource potential and economic evaluation criteria of different types of continental shale oil are systematically summarized. According to evaluation, the recoverable resources of in-situ conversion technology for shale oil with low-medium maturity in China is about (700-900)x10(8) t, and the economic recoverable resources under medium oil price condition ($ 60-65/bbl) is (150-200)x10(8) t. Shale oil with low-medium maturity guarantees the occurrence of the continental shale oil revolution. Pilot target areas should be optimized and core technical equipment should be developed according to the key parameters such as the cumulative production scale of well groups, the production scale, the preservation conditions, and the economics of exploitation. The geological resources of medium-high maturity shale oil are about 100x10(8) t, and the recoverable resources can to be determined after the daily production and cumulative production of a single well reach the economic threshold. Continental shale oil and tight oil are different in lithological combinations, facies distribution, and productivity evaluation criteria. The two can be independently distinguished and coexist according to different resource types. The determination of China's continental shale oil types, resources potentials, and tight oil boundary systems can provide a reference for the upcoming shale oil exploration and development practices and help the development of China's continental shale oil.
引用
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页码:1 / 11
页数:11
相关论文
共 32 条
[1]  
[Anonymous], 2018, PETROL EXPLOR DEV+
[2]  
[付金华 Fu Jinhua], 2013, [沉积学报, Acta Sedimentologica Sinica], V31, P928
[3]  
[付锁堂 Fu Suotang], 2013, [沉积学报, Acta Sedimentologica Sinica], V31, P672
[4]  
[胡素云 Hu Suyun], 2018, [石油勘探与开发, Petroleum Exploration and Development], V45, P737
[5]  
[黄薇 Huang Wei], 2013, [古地理学报, Journal of Palaeogeography], V15, P635
[6]   Unconventional shale-gas systems: The Mississippian Barnett Shale of north-central Texas as one model for thermogenic shale-gas assessment [J].
Jarvie, Daniel M. ;
Hill, Ronald J. ;
Ruble, Tim E. ;
Pollastro, Richard M. .
AAPG BULLETIN, 2007, 91 (04) :475-499
[7]  
[金之钧 Jin Zhijun], 2019, [石油与天然气地质, Oil & Gas Geology], V40, P451
[8]  
[匡立春 Kuang Liehun], 2012, [石油勘探与开发, Petroleum Exploration and Development], V39, P657
[9]   A HARDWARE-EFFICIENT HYBRID BEAMFORMING SOLUTION FOR MMWAVE MIMO SYSTEMS [J].
Li, Ming ;
Wang, Zihuang ;
Li, Hongyu ;
Liu, Qian ;
Zhou, Liang .
IEEE WIRELESS COMMUNICATIONS, 2019, 26 (01) :137-143
[10]  
[梁狄刚 Liang Digang], 2011, [石油学报, Acta Petrolei Sinica], V32, P8