天然气地球科学

• 非常规天然气 • 上一篇    

中美致密油成藏条件、分布特征和开发现状对比与启示

李登华1,刘卓亚1,张国生2,郑志红1,贾君1,高煖1,昝昕1   

  1. 1.国土资源部油气资源战略研究中心,北京 100034;
    2.中国石油勘探开发研究院,北京 100083
  • 收稿日期:2017-02-28 修回日期:2017-06-25 出版日期:2017-07-10 发布日期:2017-07-10
  • 作者简介:李登华(1972-),男,山东金乡人,副研究员,博士,主要从事油气资源评价、石油地质综合研究等工作. E-mail:Lidh@sinooilgas.org.cn.
  • 基金资助:

    国土资源部重大科技专项“全国油气资源动态评价(2015)”(编号:2015YQKYQ01);国家科技重大专项课题“全球重点地区非常规油气资源潜力分析与未来战略选区”(编号:2011ZX05028-002);中国石油天然气股份有限公司重大科技专项“中国石油第四次油气资源评价”(编号:2013E-0502) 联合资助.

Comparison and revelation of tight oil accumulation conditions, distribution characteristics and development status between China and U.S.

Li Deng-hua1,Liu Zhuo-ya1,Zhang Guo-sheng2,Zheng Zhi-hong1,Jia Jun1,Gao Xuan1,Zan Xin1   

  1. 1.Strategic Research Center for Oil & Gas Resources,MLR,Beijing 100034,China;
    2.PetroChina Research Institute of Petroleum Exploration & Development,Beijing 100083,China
  • Received:2017-02-28 Revised:2017-06-25 Online:2017-07-10 Published:2017-07-10

摘要:

致密油可划分为源储互层型、源下储上型、源上储下型和源储一体型4种类型。通过中美致密油形成条件、资源潜力和开发现状对比,提出美国致密油大多为海相,技术可采资源主要分布在前陆盆地的二叠系、白垩系和泥盆系,主要富集在Permian、Western Gulf和Williston 3个盆地,主要储层为碳酸盐岩;中国已发现的致密油均为陆相,技术可采资源主要分布在克拉通盆地和裂谷盆地的三叠系、白垩系和古近系,主要富集在鄂尔多斯、松辽和渤海湾3个盆地,主要储层为砂岩。中国致密油资源潜力大、分布范围广,但地质与地表条件复杂,规模开发需要较长时间理论认识和工程技术准备,应给予适当的政策扶持。预测2030年我国致密油年产量有望达到(1 500~2 500)×104t,将成为石油生产的重要补充。

关键词: 致密油, 资源, 成藏条件, 分布特征, 开发现状, 对比, 启示

Abstract:

The tight oil can be divided into 4 types which include interbedded source and reservoir play,below-source and above-reservoir play,above-source and below-reservoir play,and integrated source and reservoir play.Through the comparison of the tight oil forming condition,resources potential and development status between China and U.S.,a point of view is put forward that the U.S. tight oil plays are mostly marine facies and technically recoverable tight oil resources are mainly distributed in the Permian,Cretaceous and Devonian layers of foreland basins.Meanwhile,resources are mainly enriched in Permian,Western Gulf and Williston basins,while the dominating reservoirs are carbonate rocks.The tight oil plays discovered in China are all continental,and technically recoverable resources are mainly distributed in the Triassic,Cretaceous and Paleogene layers of craton and rift basins.Furthermore,tight oil resources are mainly enriched in Ordos,Songliao and Bohai Bay basins,while the primary reservoirs are sandstones.The tight oil resource potential in China is large and widely distributed,but the geology and surface conditions are complicated,and large scale exploitations need a long preparation period for the theoretical understanding and engineering technologies,so it is necessary that appropriate incentive policies should be enacted.The tight oil annual output in China is expected to reach 15-25 million tons in 2030,and it will be an important supplement to oil production.

Key words: Tight oil, Resources, Accumulation conditions, Distribution characteristics, Development status, Comparison, Revelation

中图分类号: 

  • TE122

[1]Sonnenberg S A,Pramudito A.Petroleum geology of the giant Elm Coulee field,Williston Basin[J].AAPG Bulletin,2009,93(9):1127-1153.
[2]U.S.Geological Survey.Assessment of Undiscovered Continuous Oil Resources in the Wolfcamp Shale of the Midland Basin,Permian Basin Province,Texas,2016[R].Reston:U.S.Geological Survey,2016.
[3]U.S.Energy Information Administration.Lower 48 states shale plays[R].Washington D C:U.S.Energy Information Administration,2016.
[4]Sieminski A.EIA’s energy Outlook 2016[R].Washington D C:U.S.Energy Information Administration,2016.
[5]U.S.Energy Information Administration.Annual Energy Outlook 2017[R].Washington D C:U.S.Energy Information Administration,2017.
[6]Du Jinhu,Yang Tao,Li Xin,et al.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[J].China Petroleum Exploration,2016,21(2):1-15.[杜金虎,杨涛,李欣,等.中国石油天然气股份有限公司“十二五”油气勘探发现与“十三五”展望[J].中国石油勘探,2016,21(2):1-15.]
[7]U.S.Energy Information Administration.Annual Energy Outlook 2012[R].Washington D C:U.S.Energy Information Administration,2012.
[8]Canadian Society for Unconventional Resources.Understanding Tight Oil[DB/OL].Calgary:Canadian Society for Unconventional Resources,2012[2017-2].http://www.csur.com/sites/default/files/Understanding_TightOil_FINAL.pdf.
[9]Jia Chengzao,Zou Caineng,Li Jianzhong,et al.Assesment criteria,main types,basic features and resource prospects of the tight oil in China[J].Acta Petrolei Sinica,2012,33(3):333-350.[贾承造,邹才能,李建忠,等.中国致密油评价标准、主要类型、基本特征及资源前景[J].石油学报,2012,33(3):333-350.]
[10]Zou Caineng,Zhu Rukai,Bai Bin,et al.Significance,geologic characteristics,resource potential and future challenges of tight oil and shale oil[J].Bulletin of Mineralogy,Petrology and Geochemistry,2015,34(1):3-17.[邹才能,朱如凯,白斌,等.致密油与页岩油内涵、特征、潜力及挑战[J].矿物岩石地球化学通报,2015,34(1):3-17.]
[11]Yang Hua,Li Shixiang,Liu Xianyang.Characteristics and resource prospects of tight oil and shale oil in Ordos Basin[J].Acta Petrolei Sinica,2013,34(1):1-11.[杨华,李士祥,刘显阳.鄂尔多斯盆地致密油、页岩油特征及资源潜力[J].石油学报,2013,34(1):1-11.]
[12]Zou Caineng,Zhu Rukai,Li Jianzhong,et al.SY/T 6943-2013,Tight oil Geological Evaluation Nethod[S].Beijing:National Energy Administration,2014.[邹才能,朱如凯,李建忠,等.SY/T 6943-2013,致密油地质评价方法[S].北京:国家能源局,2014.]
[13]Zhou Qingfan,Yang Guofeng.Definition and application of tight oil and shale oil terms[J].Oil & Gas Geology,2012,33(4):541-570.[周庆凡,杨国丰.致密油与页岩油的概念与应用[J].石油与天然气地质,2012,33(4):541-570.]
[14]National Energy Administration.SY/T 6943-2013 Tight Oil Geology Evaluation Methology[S].Beijing:Petroleun Industry Press.[国家能源局.SY/T 6943-2013致密油地质评价方法[S].北京:石油工业出版社.]
[15]Jarvie D M.Unconventional oil petroleum Systems:Shales and Shale Hybrids[C].AAPG International Conference and Exhibition.Calgary:AAPG,2011:1-21.
[16]Zou Caineng,Zhai Guangming,Zhang Guangya,et al.Formation,distribution,potential and prediction of global conventional and unconventional hydrocarbon resources[J].Petroleum Exploration and Development,2015,42(13):13-25.[邹才能,翟光明,张光亚,等.全球常规-非常规油气形成分布、资源潜力及趋势预测[J].石油勘探与开发,2015,42(13):13-25.]
[17]Guo Qiulin,Chen Ningsheng,Song Huanqi,et al.Accumulation models and numerical models of tight oil:A case study from Yanchang Formation in Ordos Basin[J].Lithologic Reservoirs,2013,25(1):4-20.[郭秋麟,陈宁生,宋焕琪,等.致密油聚集模型与数值模拟探讨——以鄂尔多斯盆地延长组致密油为例[J].岩性油气藏,2013,25(1):4-20.]
[18]Du Jinhu,He Haiqing,Yang Tao,et al.Progress in China’s tight oil exploration and challenges[J].China Petroleum Exploration,2014,19(1):1-9.[杜金虎,何海清,杨涛,等.中国致密油勘探进展及面临的挑战[J].中国石油勘探,2014,19(1):1-9.]
[19]Zhang Junfeng,Bi Haibin,Xu Hao,et al.New progress and reference significance of overseas tight oil exploration and development[J].Acta Petrolei Sinica,2015,36(2):127-137.[张君峰,毕海滨,许浩,等.国外致密油勘探开发新进展及借鉴意义[J].石油学报,2015,36(2):127-137.]
[20]Zhang Xinshun,Wang Hongjun,Ma Feng,et al.Classification and characteristics of tight oil plays[J].Petroleum Science,2016,13:18-33.
[21]Zou Caineng,Dong Dazhong,Wang Yuman,et al.GB/T 31483-2015,Shale Gas Geological Evaluation Method[S].Beijing:Standardization Administration of the People’s Republic of China,2015.[邹才能,董大忠,王玉满,等.GB/T 31483-2015,页岩气地质评价方法[S].北京:中国国家标准化管理委员会,2015.]
[22]Hackley P C,Cardott B J.Application of organic petrography in North American shale petroleum systems:A review[J].International Journal of Coal Geology,2016,163:8-51.
[23]U.S.Energy Information Administration.Review of Emerging Resources:U.S.Shale Gas and Shale Oil Plays[R].Washington D C:U.S.Energy Information Administration,2011.
[24]Zou Caineng,Yang Zhi,Cui Jingwei,et al.Formation mechanism,geological characteristics and development strategy of nonmarine shale oil in China[J].Petroleum Exploration and Development,2013,40(1):14-26.[邹才能,杨智,崔景伟,等.页岩油形成机制、地质特征及发展对策[J].石油勘探与开发,2013,40(1):14-26.]
[25]Wang Hongjun,Ma Feng,Tong Xiaoguang,et al.Assessment of global unconventional oil and gas resources[J].Petroleum Exploration and Development,2016,43(6):850-862.[王红军,马锋,童晓光,等.全球非常规油气资源评价[J].石油勘探与开发,2016,43(6):850-862.]
[26]Ma Jian,Huang Zhilong,Zhong Dakang,et al.Formation and distribution of tuffaceous tight reservoirs in the Permian Tiaohu Formation in the Malang Sag,Santanghu Basin,NW China[J].Petroleum Exploration and Development,2016,43(5):714-722.[马剑,黄志龙,钟大康,等.三塘湖盆地马朗凹陷二叠系条湖组凝灰岩致密储集层形成与分布[J].石油勘探与开发,2016,43(5):714-722.]
[27]Fu Jinhua,Yu Jian,Xu Liming,et al.New progress in exploration and development of tight oil in Ordos Basin and main controlling factors of large-scale enrichment and exploitable capacity[J].China Petroleum Exploration,2015,20(5):9-19.[付金华,喻建,徐黎明,等.鄂尔多斯盆地致密油勘探开发新进展及规模富集可开发主控因素[J].中国石油勘探,2015,20(5):9-19.]
[28]Fu Suotang,Zhang Daowei,Xue Jianqin,et al.Exploration potential and geological conditions of tight oil in the Qaidam Basin[J].Acta Sedimentologica Sinica,2013,31(4):672-682.[付锁堂,张道伟,薛建勤,等.柴达木盆地致密油形成的地质条件及勘探潜力分析[J].沉积学报,2013,31(4):672-682.]
[29]Sha Qing’an.Discussion on mixing deposition and hunji rock[J].Journal of Palaeogeography,2001,3(3):63-66.[沙庆安.混合沉积和混积岩的讨论[J].古地理学报,2001,3(3):63-66.]
[30]Yang Yueming,Yang Jiajing,Yang Guang,et al.New research progress of Jurassic tight oil in Central Sichuan Basin[J].Petroleum Exploration and Development,2016,43(6):873-882.[杨跃明,杨家静,杨光,等.四川盆地川中地区侏罗系致密油研究新进展[J].石油勘探与开发,2016,43(6):873-882.]
[31]Yang Hua,Liang Xiaowei,Niu Xiaobing,et al.Geological conditions for continental tight oil formation and the main controlling factors for the enrichment:A case of Chang 7 member,Triassic Yanchang Formation,Ordos Basin,NW China[J].Petroleum Exploration and Development,2017,44(1):12-20.[杨华,梁晓伟,牛小兵,等.陆相致密油形成地质条件及富集主控因素——以鄂尔多斯盆地三叠系延长组7 段为例[J].石油勘探与开发,2017,44(1):12-20.]
[32]U.S.Energy Information Administration.Technically Recoverable Shale Oil and Shale Gas Resources:An Assessment of 137 Shale Formations in 41 Countries Outside the United States[R].Washington D C:U.S.Energy Information Administration,2013.
[33]U.S.Energy Information Administration.Chapter 9.Oil and gas supply module[EB/OL].(2017-01-01)[2017-02-28].https://www.eia.gov/outlooks/aeo/assumptions/pdf/oilgas.pdf.
[34]U.S.Geological Survey.Improved USGS Methodology for Assessing Continuous Petroleum Resource[R].Reston:U.S.Geological Survey,2012.
[35]Guo Qiulin,Li Feng,Chen Ningsheng,et al.Methodology,new software system and key technology for tight oil resources assessment[J].Natural Gas Geoscience,2016,27(9):1566-1575.[郭秋麟,李峰,陈宁生,等.致密油资源评价方法、软件及关键技术[J].天然气地球科学,2016,27(9):1566-1575.]
[36]U.S.Energy Information Administration.Drilling productivity report for key tight oil and shale gas regions[EB/OL].(2017-05-15)[2017-06-05].https://www.eia.gov/petroleum/drilling/pdf/dpr-full.pdf.
[37]U.S.Energy Information Administration.Drilling productivity report for key tight oil and shale gas regions[EB/OL].(2017-02-13)[2017-06-05].https://www.eia.gov/petroleum/drilling/archive/2017/02/pdf/dpr -full.pdf.
[38]U.S.Energy Information Administration.Drilling productivity report for key tight oil and shale gas regions[EB/OL].(2016-02-08)[2017-06-05].https://www.eia.gov/petroleum/drilling/archive/2016/02/pdf/dpr -full.pdf.
[39]U.S.Energy Information Administration.Drilling productivity report for key tight oil and shale gas regions[EB/OL].(2015-02-09)[2017-06-05].https://www.eia.gov/petroleum/drilling/archive/2015/02/pdf/dpr -full.pdf.
[40]U.S.Energy Information Administration.Drilling productivity report for key tight oil and shale gas regions[EB/OL].(2014-02-13)[2017-06-05].https://www.eia.gov/petroleum/drilling/archive/2014/02/pdf/dpr -full.pdf.
[41]Rystad Energy.Average shale wellhead breakeven prices are below 40 USD/bbl[EB/OL].(2016-07-28)[2017-06-05].https://www.rystadenergy.com/NewsEvents/PressReleases/shale-well-breakeven.
[42]Sherlock M F.Energy Tax Policy:Historical Perspectives on and Current Status of Energy Tax Expenditures[R].Washington D C:U.S.Senate,2011.
[43]U.S.Department of energy.Public Law 109-58,Energy Policy Act of 2005[Z].Washington D C:U.S.Congress,2005.
[44]Qu Jingchuan,Xu Anning,Duan Lingyun,et al.Research on fiscal and tax policies to promote the development of tight oil and other unconventional oil & gas resources[J].Review of economic research,2015,2665(33):13-20.[瞿静川,徐安宁,段凌云,等.促进致密油非常规油气资源开发的财税政策研究[J].经济研究参考,2015,2665(33):13-20.]
[45]Zhao Guoquan.Foreign shale gas industrial policies and their enlightenment to our country[J].China Coal,2013,39(9):23-27.[赵国泉.国外页岩气产业政策及其对我国的启示[J].中国煤炭,2013,39(9):23-27.]
[46]U.S.Energy Information Administration.Tight oil production estimates[EB/OL].(2017-06-01)[2017-06-05].https://www.eia.gov/petroleum/data.php#crude.

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