中国石油勘探 ›› 2025, Vol. 30 ›› Issue (6): 82-100.DOI: 10.3969/j.issn.1672-7703.2025.06.007
• 勘探案例 • 上一篇
刘胜男1,朱如凯1,2,张婧雅1,刘畅1
发布日期:2025-11-14
作者简介:刘胜男,女,1996年9月出生,山东省济南市人,博士研究生,目前就读于中国石油勘探开发研究院。通信地址:北京市海淀区学院路20号。
Liu Shengnan1,Zhu Rukai1,2,Zhang Jingya1,Liu Chang1
Published:2025-11-14
摘要: Uteland Butte段是美国Uinta盆地绿河组中的典型湖相页岩油层系,2011年以来,Uteland Butte段勘探开发实现了两个转变即目标类型向湖盆中心超压页岩储层的转变和开发方式向水平井和体积压裂的转变,取得了效益开发的重大突破,近十年单井预计最终可采储量(EUR)达到几十万桶级,其高效开发突破了传统认知,成为全球陆相页岩油勘探的重要范例。本研究系统性综述了美国犹因他盆地绿河组Uteland Butte段陆相页岩油的勘探开发突破,重点剖析了其地质特征、富集控制机制及工程演进路径。研究结果表明,该段的高效富集是沉积、生烃、超压和复合孔隙结构等多要素协同作用的结果,特别是“源- 储一体”的复合孔隙结构与异常超压系统的耦合作用至关重要。工程技术方面,该段经历了从早期直井和简单压裂向水平井和“酒架式”立体开发的转型,建立了完善的“甜点评价—井网优化—分段压裂”一体化技术体系, “酒架式开发”模式通过立体井网精准、协同地动用纵向叠置的多个薄层甜点,为中国类似条件的“薄互层、强非均质”的陆相页岩油开发提供了重要借鉴。在此基础上,本文针对中国典型陆相页岩油盆地,包括吉木萨尔、济阳和松辽等,进行了差异化借鉴分析。我们发现,中国各盆地在岩性、地层压力和地应力等方面与Uinta盆地存在显著差异。因此,我们提出“因地制宜,差异化借鉴”的策略,并针对性地提出了适用于不同盆地的技术与地质建议。本文旨在提炼出多要素协同成藏的核心驱动力,并针对中国各盆地独有的地质难点,提出差异化借鉴的策略,为实现效益开发提供系统性思路。
中图分类号:
刘胜男,朱如凯,张婧雅,刘畅. 美国犹因他盆地古近系陆相页岩油勘探开发突破与重要启示[J]. 中国石油勘探, 2025, 30(6): 82-100.
Liu Shengnan,Zhu Rukai,Zhang Jingya,Liu Chang. Breakthroughs in the Exploration and Development of Paleogene Continental Shale Oil in the Uinta Basin, USA , and Their Significant Implications[J]. China Petroleum Exploration, 2025, 30(6): 82-100.
| [1]杨雷, 金之钧. 全球页岩油发展及展望[J]. 中国石油勘探, 2019, 24(5): 553-559. YANG Lei, JIN Zhijun. Global shale oil development and prospects[J]. China Petroleum Exploration, 2019, 24(5): 553-559. [2]李国欣, 雷征东, 董伟宏,等. 中国石油非常规油气开发进展、挑战与展望[J]. 中国石油勘探, 2022, 27(1): 1-11. Li Guoxin, Lei Zhengdong, Dong Weihong, Wang Hongyan, Zheng Xingfan, Tan Jian. Progress, challenges and prospects of unconventional oil and gas development of CNPC[J]. China Petroleum Exploration, 2022, 27(1): 1-11. [3]李国欣, 朱如凯. 中国石油非常规油气发展现状、挑战与关注问题[J]. 中国石油勘探, 2020, 25(2): 1-13. DOI: 10.3969/j.issn.1672-7703.2020.02.001. Li Guoxin, Zhu Rukai. Progress, challenges and key issues of unconventional oil and gas development of CNPC[J]. China Petroleum Exploration, 2020, 25(2): 1-13. DOI: 10.3969/j.issn.1672-7703.2020.02.001. [4]EIA (2019). U.S. Crude Oil Production Expected to Continue to Set Records. U.S. Energy Information Administration,2019. [5]USGS (2015). Assessment of Undiscovered Conventional Oil and Gas Resources in the Green River Formation, Uinta Basin, Utah, 2015. United States Geological Survey, Open-File Report 2015–?1156. [6]胡素云, 赵文智, 侯连华, 等. 中国陆相页岩油发展潜力与技术对策[J]. 石油勘探与开发, 2020,47(4): 819-828. HU Suyun, ZHAO Wenzhi, HOU Lianhua, YANG Zhi, ZHU Rukai, WU Songtao, BAI Bin, JIN Xu. Development potential and technical strategy of continental shale oil in China[J]. Petroleum Exploration & Development, 2020,47(4): 819-828. [7]胡素云, 白斌, 陶士振, 等. 中国陆相中高成熟度页岩油非均质地质条件与差异富集特征[J]. 石油勘探与开发, 2022,49(2): 224-237. HU Suyun, BAI Bin, TAO Shizhen, et al. Heterogeneous geological conditions and differential enrichment of medium and high maturity continental shale oil in China[J]. Petroleum Exploration & Development, 2022,49(2): 224-237. [8]张欣, 刘吉余, 侯鹏飞. 中国页岩油的形成和分布理论综述[J]. 地质与资源, 2019, 28(2): 165-170. ZHANG Xin, LIU Ji-yu, HOU Peng-fei. A Review on the formation and distribution theories of the shale oil in China [J]. Geology and Resources, 2019, 28(2): 165-170. [9]赵文智, 胡素云, 侯连华,等. 中国陆相页岩油类型、资源潜力及与致密油的边界[J]. 石油勘探与开发, 2020,47(1): 1-10. ZHAO Wenzhi, HU Suyun, HOU Lianhua, et al. Types and resource potential of continental shale oil in China and its boundary with tight oil[J]. ?Petroleum Exploration & Development, 2020,47(1): 1-10. [10]朱如凯,张婧雅,李梦莹,等. 2023. 陆相页岩油富集基础研究进展与关键问题. 地质学报, 97(9): 2874~2895. Zhu Rukai, Zhang Jingya, Li Mengying, et al. 2023. Advances and key issues in the basic research of non-marine shale oil enrichment. Acta Geologica Sinica, 97(9): 2874~2895. [11]朱如凯,邹才能,吴松涛,等. 中国陆相致密油形成机理与富集规律[J]. 石油与天然气地质, 2019, 40(6): 1168-1184. doi: 10.11743/ogg20190602.? Zhu Rukai,Zou Caineng,Wu Songtao,et al. Mechanism for generation and accumulation of continental tight oil in China[J]. Oil & Gas Geology, 2019, 40(6): 1168-1184. [12]赵文智, 朱如凯, 张婧雅, 等. 中国陆相页岩油类型、勘探开发现状与发展趋势. 中国石油勘探, 2023, 28(4): 1-13. DOI: 10.3969/j.issn.1672-7703.2023.04.001. Zhao Wenzhi, Zhu Rukai, Zhang Jingya, et al. Classification, exploration and development status and development trend of continental shale oil in China. China Petroleum Exploration, 2023, 28(4): 1-13. [13]刘国强, 赵先然, 袁超, 等. 陆相页岩油宏观结构测井评价及其甜点优选. 中国石油勘探, 2023, 28(1): 120-134. Liu Guoqiang, Zhao Xianran, Yuan Chao, et al. Logging evaluation of macro-structure of continental shale oil reservoir and sweet spots selection. China Petroleum Exploration, 2023, 28(1): 120-134. [14]金之钧, 朱如凯, 梁新平,等. 当前陆相页岩油勘探开发值得关注的几个问题[J]. 石油勘探与开发, 2021,48(6): 1276-1287. JIN Zhijun, ZHU Rukai, LIANG Xinping, et al. Several issues worthy of attention in current lacustrine shale oil exploration and development[J]. Petroleum Exploration & Development, 2021,48(6): 1276-1287. [15]Cloetingh, S., Burov, E.. Lithospheric folding and sedimentary basin evolution: a review and analysis of formation mechanisms. Basin Research, 2011,23. [16]Remy, Robert R., Stratigraphy of the Eocene Part of the Green River Formation in the South-Central Part of the Uinta Basin, Utah: U.S. Geological Survey Bulletin, 1992,1787 - BB, p. 1-79, https://pubs.usgs.gov/bul/1787bb/report.pdf. [17]Ryder, R.T., Fouch, T.D., and Elison, J.H., Early Tertiary sedimentation in the western Uinta Basin, Utah: Geological Survey of America Bulletin, 1976, 87(4), p. 496–?512. [18]Schamel, S., Rediscovered shale oil resource play potential of the Green River Formation, Uinta Basin, Utah—Associated with energy resource development, in Vanden Berg, M.D., Ressetar, R., and Birgenheier, L.P., editors, Geology of Utah’s Uinta Basin and Uinta Mountains: Utah Geological Association Publication ,2015,44, p. 275–?303. [19]钱家麟,尹亮.油页岩:石油的补充能源[M].中国石化出版社,2011. [20]Johnson, R.C., Birdwell, J.E., Mercier, T.J., et al., Assessment of undiscovered oil and gas resources in the Uteland Butte Member of the Eocene Green River Formation, Uinta Basin, Utah: U.S. Geological Survey Fact Sheet, 2015, 2015–?3052, 2 p. [21]Johnson, R. C., Birdwell, J. E., Mercier, T. J., et al. Geology of tight oil and potential tight oil reservoirs in the lower part of the Green River Formation, Uinta, Piceance, and Greater Green River Basins, Utah, Colorado, and Wyoming: U.S. Geological Survey Scientific Investigations Report 2016, 5008, 63 p., https://pubs.usgs.gov/sir/2016/5008/sir20165008.pdf. [22]Chidsey, T.C., 2010, Major Oil Plays in Utah and Vicinity, Utah Geological Survey –? Survey Notes, Vol. 42, Number 1 [23]Logan, S. K.; Sarg, J. F.; & Vanden Berg, M. D. (2016) Lithofacies, deposition early diagenesis, and porosity of the Utelan Butte member, Green River Formation, Eastern Uinta Basin, Utah and Colorado. Open-file report 652. Utah Geological Survey. [24]Geological Survey (U.S.), and Henry W. Roehler. Northwest-Southeast Surface and Subsurface Correlations of the Intertongued Wasatch and Green River Formations, Sand Wash Basin, Northwest Colorado. The Survey; For sale by Map Distribution, 1991. [25]Johnson, R. C., Early Cenozoic history of the Uinta and Piceance Creek basins, Utah and Colorado, with special reference to the development of Eocene Lake Uinta, in Flores R. M. and Kaplan, S. S., eds., Cenozoic Paleogeography of the West-Central United States. Rocky Mountain Section (SEPM): Silers Printing, 1985,p. 247-276. [26]M. Elliot Smith, Alan R. Carroll, Brad S. Singer; Synoptic reconstruction of a major ancient lake system: Eocene Green River Formation, western United States. GSA Bulletin 2008;;120 (1-2): 54–?84. [27]Smith, M. E, The stratigraphy and geochronology of the Green River Formation, Western U.S [Ph.D. thesis]: Madison, University of Wisconsin Madison, 2007,318p.,http://search.proquest.com/docview/304776713/A64EEBCAC5A64C64PQ/2?accountid=14474. [28]Vanden Berg, M. D., Wood, R. E., Carney, S. M, et al. Geological Characterization of the Uteland Butte Member of the Eocene Green River Formation: An Emerging Unconventional Carbonate Tight Oil Play in the Uinta Basin, Utah. Paper presented at Rocky Mountain Section AAPG Annual Meeting, 2014,Denver, CO. [29]Morgan, C.D., Chidsey, T.C. Jr., McClure, K.P., et al. Reservoir characterization of the lower Green River Formation, Uinta Basin,Utah: Utah Geological Survey Open-File Report, 2003, 411,140 p. [30]John A. Masters., Case history for a major Alberta Deep Basin gas trap, the Cadomin Formation, in Masters, J.A., ed., Elmsworth, case study of a deep basin gas field: American Association of Petroleum Geologists Memoir 1984,38, p. 115–?140. [31]Spencer, C.W., Hydrocarbon generation as a mechanism for overpressuring in Rocky Mountain Region: American Association of Petroleum Geologists Bulletin, 1987, v. 71(4), p. 368–?388. [32]Nuccio, V. F., and L. N. R. Roberts, Thermal maturity and oil and gas generation history of petroleum systems in the Uinta-Piceance Province, Utah and Colorado, in Petroleum Systems and Geologic Assessment of Oil and Gas in the Uinta-Piceance Province, Utah and Colorado, U.S. Geological Survey Digital Data Series DD5-69-B, 2003,Central Region, Denver, Colo. [33]Picard, Dane M., 1957, Green River and Lower Uinta Formations-Subsurface Stratigraphic Changes in Central and Eastern Uinta Basin, Utah: Utah Geological Association, p. 116 –? 130. [34]Fidler, M. M., Vanden Berg, M. D., Carney, S. M.. Characterization of an Unconventional Resource, Uteland Butte Member, Lower Green River Formation, Uinta Basin, Utah[J]. Search and Discovery, 2022, (11365), 1-22. [35]Manche, C.J. and Kaczmarek, S.E., Dolomite Stoichiometry as a Proxy Record for Fluctuations in Lake Level: A Case Study from the Eocene Uteland Butte Member of the Green River Formation, Uinta Basin, Utah, USA. Journal of Sedimentary Research, 2023, v. 93 (7), p. 431–?452. [36]Hu, T., Pang, X., Jiang, F., et al. Movable oil content evaluation of lacustrine organic-rich shales: Methods and a novel quantitative evaluation model. ?Earth-Science Reviews,2012, 214, 103545. [37]Sigler, Joshua T., Luke J. Fidler and Matthew A. Jones. “Beyond the Uteland Butte Part II: Delineating Stacked Pay Sweet Spots for Development Optimization.” 2023 AAPG Rocky Mountain Section Meeting 2023: n. pag. [38]T??navsuu-Milkeviciene, Kati.,Sarg, J.F.. Evolution of an organic-rich lake basin - stratigraphy, climate and tectonics: Piceance Creek basin, Eocene Green River Formation. Sedimentology. 2012, 59(6). 1735-1768. 10.1111/j.1365-3091.2012.01324.x. [39]Little, T.M., Depositional environments, petrology, and diagenesis of the basal limestone facies, Green River Formation (Eocene), Uinta Basin, Utah:, Salt Lake City, University of Utah, Masters thesis, 1988,151 p. [40]Gall, R., Birdwell, J., Brinkerhoff, R., Vanden Berg, M.. Geologic characterization and depositional history of the Uteland Butte Member, Green River Formation, southwestern Uinta Basin, Utah. Geosites. 2022, (pp.352-378). [41]Anders, Donald E. and Peter M. Gerrild. “Hydrocarbon Generation in Lacustrine Rocks of Tertiary Age, Uinta Basin, Utah: ABSTRACT.” AAPG Bulletin, 1984 (68): 931-931. [42]Birdwell, J.E., Berg, M.D., Johnson, R.C., et al. Geological, geochemical, and reservoir characterization of the Uteland Butte member of the Green River Formation, Uinta Basin, Utah. [M] In book: Hydrocarbon Source Rocks in Unconventional Plays, Rocky Mountain Region ,2016,pp.352-378) [43]Brinkerhoff , R., Vanden Berg , M., and Millard , M., 2022, Using pore system characterization to subdivide the burgeoning Uteland Butte Play, Green River Formation, Uinta Basin, Utah: Geosites, v. 50, p. 1-27., doi: 10.31711/ugap.v50i.105. [44]Law, B.E., and Spencer, C.W., Abnormal pressure in hydrocarbon environments, in Law, B.E., Ulmischek, G.F., and Slavin, V.I., eds., Abnormal pressures in hydrocarbon environments: American Association of Petroleum Geolo??gists Memoir , 1998, 24, p. 1–?11. [45]Anderson, J.G., and Roesink, J.G., Reservoir characterization of the Uteland Butte Formation in the Uinta Basin: American Association of Petroleum Geologists Search and Discovery,2013, Article no. 50888, 2 oversized sheets. [46]杨建国, 李士超, 姚玉来, 等. 松辽盆地北部上白垩统青山口组一段页岩油战略调查成果综述[J]. 地质与资源, 2021, 30(3): 232-238, 264. YANG Jian-guo, LI Shi-chao, YAO Yu-lai, et al.. STRATEGIC SURVEY RESULTS OF SHALE OIL IN THE FIRST MEMBER OF QINGSHANKOU FORMATION, UPPER CRETACEOUS IN NORTHERN SONGLIAO BASIN[J]. Geology and Resources, 2021, 30(3): 232-238, 264 [47]张君峰, 徐兴友, 白静, 等. 松辽盆地南部白垩系青一段深湖相页岩油富集模式及勘探实践[J]. 石油勘探与开发, 2020,47(4): 637-652. ZHANG Junfeng, XU Xingyou, BAI Jing, et al. Enrichment and exploration of deep lacustrine shale oil in the first Member of Cretaceous Qingshankou Formation, southern Songliao Basin, NE China[J]. Petroleum Exploration & Development, 2020,47(4): 637-652. [48]王建, 郭秋麟, 赵晨蕾, 等. 中国主要盆地页岩油气资源潜力及发展前景[J]. 石油学报, 2023, 44(12): 2033-2044. Wang Jian, Guo Qiulin, Zhao Chenlei, et al. Potentials and prospects of shale oil-gas resources in major basins of China[J]. Acta Petrolei Sinica, 2023, 44(12): 2033-2044. [49]柳波, 石佳欣, 付晓飞, 等. 陆相泥页岩层系岩相特征与页岩油富集条件——以松辽盆地古龙凹陷白垩系青山口组一段富有机质泥页岩为例[J]. 石油勘探与开发, 2018,45(5): 828-838. LIU Bo, SHI Jiaxin, FU Xiaofei, et al. Petrological characteristics and shale oil enrichment of lacustrine fine-grained sedimentary system: A case study of organic-rich shale in first member of Cretaceous Qingshankou Formation in Gulong Sag, Songliao Basin, NE China[J]. Petroleum Exploration & Development, 2018,45(5): 828-838. [50]徐兴友, 刘卫彬, 白静, 等. 松辽盆地南部青山口组一段页岩油富集地质特征及资源潜力[J]. 地质与资源, 2021, 30(3): 296-305. XU Xing-you, LIU Wei-bin, BAI Jing, et al. ENRICHMENT CHARACTERISTICS AND RESOURCE POTENTIAL OF SHALE OIL IN THE FIRST MEMBER OF QINGSHANKOU FORMATION IN SOUTHERN SONGLIAO BASIN[J]. Geology and Resources, 2021, 30(3): 296-305 [51]何文渊, 蒙启安, 冯子辉,等. 松辽盆地古龙页岩油原位成藏理论认识及勘探开发实践[J]. 石油学报, 2022, 43(1): 1-14. He Wenyuan, Meng Qian, Feng Zihui, et al. In-situ accumulation theory and exploration & development practice of Gulong shale oil in Songliao Basin[J]. Acta Petrolei Sinica, 2022, 43(1): 1-14. [52]赵贤正, 金凤鸣, 周立宏, 等. 渤海湾盆地风险探井歧页1H井沙河街组一段页岩油勘探突破及其意义[J]. 石油学报, 2022, 43(10): 1369-1382. Zhao Xianzheng, Jin Fengming, Zhou Lihong, et al. Breakthrough and significance of shale oil exploration in Member 1 of Shahejie Formation of Well Qiye1H, a risk exploratory well in Bohai Bay Basin[J]. Acta Petrolei Sinica, 2022, 43(10): 1369-1382. [53]刘惠民. 济阳坳陷古近系页岩油地质特殊性及勘探实践——以沙河街组四段上亚段—沙河街组三段下亚段为例[J]. 石油学报, 2022, 43(5): 581-594. Liu Huimin. Geological particularity and exploration practice of Paleogene shale oil in Jiyang depression: a case study of the upper submember of Member 4 to the lower submember of Member 3 of Shahejie Formation[J]. Acta Petrolei Sinica, 2022, 43(5): 581-594. [54]杨勇, 张世明, 吕琦, 李伟忠, 蒋龙, 刘祖鹏, 吕晶, 任敏华, 路广. 济阳坳陷古近系沙四段—沙三段页岩油立体评价探索与实践. 中国石油勘探, 2024, 29(3): 31-44. DOI: 10.3969/j.issn.1672-7703.2024.03.004. Yang Yong, Zhang Shiming, Lv Qi, Li Weizhong, Jiang Long, Liu Zupeng, Lv Jing, Ren Minhua, Lu Guang. Research and practice of stereoscopic evaluation of shale oil in the fourth-third member of the Paleogene Shahejie Formation in Jiyang Depression. China Petroleum Exploration, 2024, 29(3): 31-44. DOI: 10.3969/j.issn.1672-7703.2024.03.004. [55]刘惠民. 济阳坳陷页岩油勘探实践与前景展望. 中国石油勘探, 2022, 27(1): 73-87. DOI: 10.3969/j.issn.1672-7703.2022.01.007. Liu Huimin. Exploration practice and prospect of shale oil in Jiyang Depression. China Petroleum Exploration, 2022, 27(1): 73-87. [56]许琳,常秋生,杨成克,等. 吉木萨尔凹陷二叠系芦草沟组页岩油储层特征及含油性[J]. 石油与天然气地质, 2019, 40(3): 535-549. doi: 10.11743/ogg20190309 Xu Lin,Chang Qiusheng,Yang Chengke,et al. Characteristics and oil-bearing capability of shale oil reservoir in the Permian Lucaogou Formation,Jimusaer sag[J]. Oil & Gas Geology, 2019, 40(3): 535-549. [57]李杰, 邓孙华, 坎尼扎提, 等. 吉木萨尔凹陷芦草沟组页岩油储层发育特征与成藏条件研究[J]. 世界地质, 2021, 40(4): 881-888 LIJie, DENGSunhua, KANNIZhati, et al. Development characteristics and reservoir-forming conditions of shale oil reservoir in Lucaogou Formation,Jimusar sag[J]. World Geology, 2021, 40(4): 881-888 [58]Yang, Z., Zou, C., Wu, S.,et al. Formation, distribution and resource potential of the “sweet areas (sections)” of continental shale oil in China: Marine and Petroleum Geology, 2019, 102:48–60. [59]陈超峰,王波,王佳,等. 吉木萨尔页岩油下甜点二类区水平井压裂技术 [J]. 石油钻探技术,2021, 49(4):112-117. CHEN Chaofeng, WANG Bo, WANG Jia, et al. Fracturing technologies of horizontal well in the second-class shale oil reservoirs of the lower sweet spot areas in Jimusaer [J]. Petroleum Drilling Techniques,2021, 49(4):112-117. [60]Yang, Z., Zou, C., Hou, L., et al. Division of fine-grained rocks and selection of “sweet sections” in the oldest continental shale in China: Taking the coexisting combination of tight and shale oil in the Permian Junggar Basin: Marine and Petroleum Geology, 2019 ,109:339–348. [61]邱振, 陶辉飞, 卢斌, 等. 吉木萨尔凹陷芦草沟组烃源岩评价及页岩油富集条件探讨[J]. 地质科学, 2016, 51(2): 533-546. Qiu Zhen, Tao Huifei, Lu Bin, et al. Formation, distribution and resource potential of the Source rock evaluation and enrichment conditions of shale oil for Lucaogou Formation in Jimsar sag[J]. Chinese Journal of Geology, 2016, 51(2): 533-546. [62]王剑,李二庭,陈俊,等.准噶尔盆地吉木萨尔凹陷二叠系芦草沟组优质烃源岩特征及其生烃机制研究[J].地质论评, 2020,66(3):755-764. WANG Jian, LI Erting, CHEN Jun, et al. Characteristics and hydrocarbon generation mechanism of high- quality source rocks in Permian Lucaogou Formation, Jimsar Sag, Junggar Basin[J]. Geological Review, 2020 ,66(3):755-764. |
| [1] | 何文军, 潘进, 刘超威, 王秋玉, 李辉, 陈梦娜, 李鹏, 王宁. 准噶尔盆地侏罗系深层煤岩气地质特征与成藏模式[J]. 中国石油勘探, 2025, 30(4): 78-91. |
| [2] | 刘洪林, 王怀厂, 黄道军, 赵群, 李晓波. 鄂尔多斯盆地深部煤岩气储层气孔成因及成藏富集特征[J]. 中国石油勘探, 2025, 30(4): 92-107. |
| [3] | 黄红星, 石军太, 陈国辉, 王峰, 陶自强, 刘莹, 朱文涛, 李小刚, 赵浩阳, 常益行, 林海鲲, 何睿. 鄂尔多斯盆地大宁—吉县区块深层8号煤夹矸特征及其与产能关系分析[J]. 中国石油勘探, 2025, 30(4): 108-119. |
| [4] | 刘国勇, 张永庶, 薛建勤, 龙国徽, 马峰, 王波, 王永生, 张长好, 周飞, 田继先, 孙秀建, 吴志雄. 柴达木盆地上石炭统和中侏罗统煤岩气地质特征与勘探方向[J]. 中国石油勘探, 2025, 30(3): 78-91. |
| [5] | 左罗, 张旭东, 陈作, 贾长贵, 孙海成, 李双明, 徐胜强. 川东南二叠系龙潭组煤系储层压裂模拟与成缝特征[J]. 中国石油勘探, 2024, 29(6): 157-169. |
| [6] | 毛新军, 李艳平, 梁则亮, 朱明, 姚卫江, 李树博, 潘拓, 胡正舟, 汪洋. 准噶尔盆地侏罗系煤岩气成藏条件及勘探潜力[J]. 中国石油勘探, 2024, 29(4): 32-44. |
| [7] | 陈旋, 张华, 林霖, 刘俊田, 苟红光, 李新宁, 程祎, 尤帆. 吐哈盆地台北凹陷中侏罗统西山窑组深层煤岩气地质特征与勘探潜力[J]. 中国石油勘探, 2024, 29(4): 45-60. |
| [8] | 舒红林, 章超, 程青松, 苏展鸿, 张涵冰, 郭宁, 孟阳. 渝西大安地区上二叠统龙潭组煤岩气地质特征及勘探前景[J]. 中国石油勘探, 2024, 29(4): 99-110. |
| [9] | 李明宅, 曹毅民, 丁蓉, 邓泽, 蒋轲, 李永洲, 姚晓莉, 侯淞译, 惠卉, 孙晓光, 伊伟, 孙潇逸, 曹昕欣. 大宁—吉县区块深层煤岩气赋存产气特征与储量估算方法指标探讨[J]. 中国石油勘探, 2024, 29(4): 146-159. |
| [10] | 吴裕根, 门相勇, 娄钰. 我国“十四五”煤层气勘探开发新进展与前景展望[J]. 中国石油勘探, 2024, 29(1): 1-13. |
| [11] | 胡英杰, 蔡国钢, 刘兴周, 周艳, 解宝国, 杨光达, 郭平, 张东伟, 翁文胜, 王伟成, 邹丙方, 崔向东. 辽河坳陷东部滩海深层—超深层天然气勘探重大发现及意义[J]. 中国石油勘探, 2023, 28(2): 24-34. |
| [12] | 张大智, 初丽兰, 李鑫, 王晓莲. 断陷盆地致密砂砾岩储层甜点综合评价及勘探成效——以松辽盆地北部徐家围子断陷下白垩统沙河子组为例[J]. 中国石油勘探, 2022, 27(5): 73-82. |
| [13] | 崔泽宏, 苏朋辉, 刘玲莉, 李铭, 王建俊. 澳大利亚苏拉特盆地Surat区块低煤阶煤层定量表征与区带划分优选[J]. 中国石油勘探, 2022, 27(2): 108-118. |
| [14] | 李国欣, 雷征东, 董伟宏, 王红岩, 郑兴范, 谭健. 中国石油非常规油气开发进展、挑战与展望[J]. 中国石油勘探, 2022, 27(1): 1-11. |
| [15] | 江青春, 汪泽成, 苏旺, 黄士鹏, 曾富英, 冯周, 毕赫, 鲁卫华. 四川盆地中二叠统茅口组一段泥灰岩源内非常规天然气成藏条件及有利勘探方向[J]. 中国石油勘探, 2021, 26(6): 82-97. |
| 阅读次数 | ||||||
|
全文 |
|
|||||
|
摘要 |
|
|||||