[1] |
邹才能, 董大忠, 王玉满, 2015: 中国页岩气特征、挑战及前景(一)[J]. 石油勘探与开发, 42, 689-701.
|
Zou Caineng, Dong Dazhong, Wang Yuman, et al. Shale gas in China: Characteristics, challenges and prospects (I)[J]. Petroleum Exploration and Development, 2015, 42(6): 689-701. |
[2] |
邹才能, 董大忠, 王玉满, 2016: 中国页岩气特征、挑战及前景(二)[J]. 石油勘探与开发, 43, 166-178.
|
Zou Caineng, Dong Dazhong, Wang Yuman, et al. Shale gas in China: Characteristics, challenges and prospects (II)[J]. Petroleum Exploration and Development, 2016, 43(2): 166-178. |
[3] |
杨跃明, 陈玉龙, 刘燊阳, 2021: 四川盆地及其周缘页岩气勘探开发现状、潜力与展望[J]. 天然气工业, 41, 42-58.
|
Yang Yueming, Chen Yulong, Liu Shenyang, et al. Status, potential and prospect of shale gas exploration and development in the Sichuan Basin and its periphery[J]. Natural Gas Industry, 2021, 41(1): 42-58. |
[4] |
郭旭升, 腾格尔, 魏祥峰, 2022: 四川盆地深层海相页岩气赋存机理与勘探潜力[J]. 石油学报, 43, 453-468.
|
Guo Xusheng, Tenger B, Wei Xiangfeng, et al. Occurrence mechanism and exploration potential of deep marine shale gas in Sichuan Basin[J]. Acta Petrolei Sinica, 2022, 43(4): 453-468. |
[5] |
刘树根, 文龙, 宋金民, 2022: 四川盆地中二叠统构造—沉积分异与油气勘探[J]. 成都理工大学学报(自然科学版), 49, 385-413.
|
Liu Shugen, Wen Long, Song Jinmin, et al. Sedimentary topography and tectonic differentiation on the Midlle Permian platform and hydrocarbon exploration in Sichuan Basin, SW China[J]. Journal of Chengdu University of Technology(Science & Technology Edition ), 2022, 49(4): 385-413. |
[6] |
何登发, 包洪平, 高山林, 2022: 构造—沉积分异原理及其地质意义[J]. 古地理学报, 24, 920-936.
|
He Dengfa, Bao Hongping, Gao Shanlin, et al. Principles of tectonic-depositional differentiation and its geological significance[J]. Journal of Palaeogeography, 2022, 24(5): 920-936. |
[7] |
刘树根, 孙玮, 罗志立, 2013: 兴凯地裂运动与四川盆地下组合油气勘探[J]. 成都理工大学学报(自然科学版), 40, 511-520.
|
Liu Shugen, Sun Wei, Luo Zhili, et al. Xingkai taphrogenesis and petroleum exploration from Upper Sinian to Cambrian Strata in Sichuan Basin, China[J]. Journal of Chengdu University of Technology (Science & Technology Edition), 2013, 40(5): 511-520. |
[8] |
汪泽成, 赵文智, 胡素云, 2017: 克拉通盆地构造分异对大油气田形成的控制作用:以四川盆地震旦系—三叠系为例[J]. 天然气工业, 37, 9-23.
|
Wang Zecheng, Zhao Wenzhi, Hu Suyun, et al. Control of tectonic differentiation on the formation of large oil and gas fields in craton basins: A case study of Sinian-Triassic of the Sichuan Basin[J]. Natural Gas Industry, 2017, 37(1): 9-23. |
[9] |
程建, 郑伦举, 2020: 川南地区金页1井早寒武世烃源岩沉积地球化学特征[J]. 石油与天然气地质, 41, 800-810.
|
Cheng Jian, Zheng Lunju. Sedimentary geochemical characteristics of the Early Cambrian source rocks in well Jinye 1 in southern Sichuan Basin[J]. Oil & Gas Geology, 2020, 41(4): 800-810. |
[10] |
王同, 熊亮, 董晓霞, 2021: 川南地区筇竹寺组新层系页岩储层特征[J]. 油气藏评价与开发, 11, 443-451.
|
Wang Tong, Xiong Liang, Dong Xiaoxia, et al. Characteristics of shale reservoir in new strata of Qiongzhusi Formation in southern Sichuan[J]. Petroleum Reservoir Evaluation and Development, 2021, 11(3): 443-451. |
[11] |
熊亮, 葛忠伟, 王同, 2021: 川南寒武系筇竹寺组勘探潜力研究[J]. 油气藏评价与开发, 11, 14-21.
|
Xiong Liang, Ge Zhongwei, Wang Tong, et al. Exploration potential of Cambrian Qiongzhusi Formation in southern Sichuan Basin[J]. Reservoir Evaluation and Development, 2021, 11(1): 14-21, 55. |
[12] |
Yang W, Zuo R S, Jiang Z X, 2018: Effect of lithofacies on pore structure and new insights into pore-preserving mechanisms of the over-mature Qiongzhusi marine shales in Lower Cambrian of the southern Sichuan Basin, China[J]. Marine and Petroleum Geology, 98, 746-762.
|
[13] |
Liu R Y, Zhou W, Xu H, 2022: Impact of minerals and sealing systems on the pore characteristics of the Qiongzhusi Formation shale in the southern Sichuan Basin[J]. ACS Omega, 7, 15821-15840.
|
[14] |
Zhao L, Liu S G, Li G Q, 2022: Sedimentary environment and enrichment of organic matter during the deposition of Qiongzhusi Formation in the upslope areas:A case study of W207 well in the Weiyuan area, Sichuan Basin, China[J]. Frontiers in Earth Science, 10, 867616-.
|
[15] |
梁霄, 李香华, 徐剑良, 2021: 从优质烃源岩到储层:构造—沉积分异格局下的四川盆地中西部下寒武统页岩气勘探前景[J]. 天然气工业, 41, 30-41.
|
Liang Xiao, Li Xianghua, Xu Jianliang, et al. Exploration prospects of Lower Cambrian shale gas in the central-western Sichuan Basin under the pattern of tectonic-depositional differentiation: From high-quality source rocks to reservoirs[J]. Natural Gas Industry, 2021, 41(5): 30-41. |
[16] |
魏国齐, 杨威, 杜金虎, 2015: 四川盆地震旦纪—早寒武世克拉通内裂陷地质特征[J]. 天然气工业, 35, 24-35.
|
Wei Guoqi, Yang Wei, Du Jinhu, et al. Geological characteristics of the Sinian-Early Cambrian intracratonic rift, Sichuan Basin[J]. Natural Gas Industry, 2015, 35(1): 24-35. |
[17] |
刘树根, 王一刚, 孙玮, 2016: 拉张槽对四川盆地海相油气分布的控制作用[J]. 成都理工大学学报(自然科学版), 43, 1-23.
|
Liu Shugen, Wang Yigang, Sun Wei, et al. Control of intracratonic sags on the hydrocarbon accumulations in the marine strata across the Sichuan Basin, China[J]. Journal of Chengdu University of Technology (Science & Technology Edition), 2016, 43(1): 1-23. |
[18] |
汪泽成, 姜华, 陈志勇, 2020: 中上扬子地区晚震旦世构造古地理及油气地质意义[J]. 石油勘探与开发, 47, 884-897.
|
Wang Zecheng, Jiang Hua, Chen Zhiyong, et al. Tectonic paleogeography of Late Sinian and its significances for petroleum exploration in the Middle-Upper Yangtze region, South China[J]. Petroleum Exploration and Development, 2020, 47(5): 884-897. |
[19] |
吴和源, 2017: 朝向层序地层学标准化:层序地层学研究的一个重要科学命题[J]. 沉积学报, 35, 425-435.
|
Wu Heyuan. Towards the standardization of sequence stratigraphy: An important scientific proposition of sequence stratigraphy[J]. Acta Sedimentologica Sinica, 2017, 35(3): 425-435. |
[20] |
姜在兴, 2010: 沉积体系及层序地层学研究现状及发展趋势[J]. 石油与天然气地质, 31, 535-541.
|
Jiang Zaixing. Studies of depositional systems and sequence stratigraphy: The present and the future[J]. Oil & Gas Geology, 2010, 31(5): 535-541. |
[21] |
吴靖, 姜在兴, 吴明昊, 2015: 细粒岩层序地层学研究方法综述[J]. 地质科技情报, 34, 16-20.
|
Wu Jing, Jiang Zaixing, Wu Minghao. Summary of research methods about the sequence stratigraphy of the fine grained rocks[J]. Bulletin of Geological Science and Technology, 2015, 34(5): 16-20. |
[22] |
刘忠宝, 杜伟, 高波, 2018: 层序格架中富有机质页岩发育模式及差异分布:以上扬子下寒武统为例[J]. 吉林大学学报(地球科学版), 48, 1-14.
|
Liu Zhongbao, Du Wei, Gao Bo, et al. Sedimentary model and distribution of organic-rich shale in the sequence stratigraphic framework: A case study of Lower Cambrian in Upper Yangtze region[J]. Journal of Jilin University (Earth Science Edition), 2018, 48(1): 1-14. |
[23] |
Embry A F, Johannessen E P, 1993: T-R sequence stratigraphy, facies analysis and reservoir distribution in the uppermost Triassic-Lower Jurassic succession, western Sverdrup Basin, Arctic Canada[J]. Norwegian Petroleum Society Special Publications, 2, 121-146.
|
[24] |
龚承林, SteelR J, 彭旸, 2022: 深海碎屑岩层序地层学50年(1970—2020)重要进展[J]. 沉积学报, 40, 292-318.
|
Gong Chenglin, Steel R J, Peng Yang, et al. Major advances in deep-marine siliciclastic sequence stratigraphy, 1970 to 2020[J]. Acta Sedimentologica Sinica, 2022, 40(2): 292-318. |
[25] |
刘犟, 张克银, 2018: 井研—犍为地区麦地坪组—筇竹寺组沉积相特征[J]. 科学技术与工程, 18, 20-25.
|
Liu Jiang, Zhang Keyin. Sedimentary facies characteristics of Maidiping-Qiongzhusi Formation in Jingyan-Qianwei area[J]. Science Technology and Engineering, 2018, 18(2): 20-25. |
[26] |
周杨, 金思丁, 刘岩, : 川西南下寒武统筇竹寺组页岩旋回地层学研究[J]. 沉积学报, , -.
|
Zhou Yang, Jin Siding, Liu Yan, et al. Cyclostratigraphy research on well-logging of the Lower Cambrian Qiongzhusi Formation in southwestern Sichuan Basin[J/OL]. Acta Sedimentologica Sinica, doi:10.14027/j.issn.1000-0550.2022.013 . |
[27] |
Liu S G, Yang Y, Deng B, 2021: Tectonic evolution of the Sichuan Basin, Southwest China[J]. Earth-Science Reviews, 213, 103470-.
|
[28] |
Wang J, Li Z X, 2003: History of Neoproterozoic rift basins in South China: Implications for Rodinia break-up[J]. Precambrian Research, 122, 141-158.
|
[29] |
李献华, 李武显, 何斌, 2012: 华南陆块的形成与Rodinia超大陆聚合—裂解:观察、解释与检验[J]. 矿物岩石地球化学通报, 31, 543-559.
|
Li Xianhua, Li Wuxian, He Bin. Building of the South China Block and its relevance to assembly and breakup of Rodinia supercontinent: Observations, interpretations and tests[J]. Bulletin of Mineralogy, Petrology and Geochemistry, 2012, 31(6): 543-559. |
[30] |
钟勇, 李亚林, 张晓斌, 2013: 四川盆地下组合张性构造特征[J]. 成都理工大学学报(自然科学版), 40, 498-510.
|
Zhong Yong, Li Yalin, Zhang Xiaobin, et al. Features of extensional structures in pre-Sinian to Cambrian strata, Sichuan Basin, China[J]. Journal of Chengdu University of Technology (Science & Technology Edition), 2013, 40(5): 498-510. |
[31] |
杜金虎, 汪泽成, 邹才能, 2016: 上扬子克拉通内裂陷的发现及对安岳特大型气田形成的控制作用[J]. 石油学报, 37, 1-16.
|
Du Jinhu, Wang Zecheng, Zou Caineng, et al. Discovery of intra-cratonic rift in the Upper Yangtze and its coutrol effect on the formation of Anyue giant gas field[J]. Acta Petrolei Sinica, 2016, 37(1): 1-16. |
[32] |
刘忠宝, 王鹏威, 聂海宽, 2022: 中上扬子地区寒武系页岩气富集条件及有利区优选[J]. 中南大学学报(自然科学版), 53, 3694-3707.
|
Liu Zhongbao, Wang Pengwei, Nie Haikuan, et al. Enrichment conditions and favorable prospecting targets of Cambrian shale gas in Middle-Upper Yangtze[J]. Journal of Central South University (Science and Technology), 2022, 53(9): 3694-3707. |
[33] |
周进高, 沈安江, 张建勇, 2018: 四川盆地德阳—安岳台内裂陷与震旦系勘探方向[J]. 海相油气地质, 23, 1-9.
|
Zhou Jingao, Shen Anjiang, Zhang Jianyong, et al. Deyang-Anyue interplatform rift in Sichuan Basin and its direction of exploration in Sinian[J]. Marine Origin Petroleum Geology, 2018, 23(2): 1-9. |
[34] |
熊添. 井研—犍为地区筇竹寺组页岩孔隙结构特征及其影响因素[D]. 北京:中国石油大学(北京),2017. |
Xiong Tian. Characteristics of shale pore structure and its influencing factors of Qiongzhusi Formation shale in Jingyan—Qianwei[D]. Beijing: China University of Petroleum, 2017. |
[35] |
赵建华, 金之钧, 林畅松, 2019: 上扬子地区下寒武统筇竹寺组页岩沉积环境[J]. 石油与天然气地质, 40, 701-715.
|
Zhao Jianhua, Jin Zhijun, Lin Changsong, et al. Sedimentary environment of the Lower Cambrian Qiongzhusi Formation shale in the Upper Yangtze region[J]. Oil & Gas Geology, 2019, 40(4): 701-715. |
[36] |
王同. 川南地区下寒武统麦地坪组—筇竹寺组储层特征及形成机理研究[D]. 成都:成都理工大学,2016. |
Wang Tong. Reservoir characteristics and formation mechanism of the Lower Cambrian Maidiping-Qiongzhusi formation in southern Sichuan[D]. Chengdu: Chengdu University of Technology, 2016. |
[37] |
汪泽成, 姜华, 王铜山, 2014: 四川盆地桐湾期古地貌特征及成藏意义[J]. 石油勘探与开发, 41, 305-312.
|
Wang Zecheng, Jiang Hua, Wang Tongshan, et al. Paleo-geomorphology formed during Tongwan tectonization in Sichuan Basin and its significance for hydrocarbon accumulation[J]. Petroleum Exploration and Development, 2014, 41(3): 305-312. |
[38] |
邢凤存, 侯明才, 林良彪, 2015: 四川盆地晚震旦世—早寒武世构造运动记录及动力学成因讨论[J]. 地学前缘, 22, 115-125.
|
Xing Fengcun, Hou Mingcai, Lin Liangbiao, et al. The records and its dynamic genesis discussion of tectonic movement during the Late Sinian and the Early Cambrian of Sichuan Basin[J]. Earth Science Frontiers, 2015, 22(1): 115-125. |
[39] |
王玉满, 沈均均, 邱振, 2021: 中上扬子地区下寒武统筇竹寺组结核体发育特征及沉积环境意义[J]. 天然气地球科学, 32, 1308-1323.
|
Wang Yuman, Shen Junjun, Qiu Zhen, et al. Characteristics and environmental significance of concretion in the Lower Cambrian Qiongzhusi Formation in the Middle-Upper Yangtze area[J]. Natural Gas Geoscience, 2021, 32(9): 1308-1323. |
[40] |
贠浩. 寒武纪开腔骨动物的分类与演化[D]. 西安:西北大学,2019. |
Yun Hao. Taxonomy and evolution of the Cambrian animal chancelloriids[D]. Xi'an: Northwest University, 2019. |
[41] |
Zhang Y Y, He Z L, Jiang S, 2018: Factors affecting shale gas accumulation in overmature shales case study from Lower Cambrian shale in western Sichuan Basin, South China[J]. Energy & Fuels, 32, 3003-3012.
|
[42] |
丁海峰. 川西南地区下寒武统麦地坪组及筇竹寺组页岩储层特征研究[D]. 成都:成都理工大学,2016. |
Ding Haifeng. The research of the shale group of Lower Cambrian Maidiping Formation and Qingzhusi Formation in southwestern Sichuan Basin[D]. Chengdu: Chengdu University of Technology, 2016. |
[43] |
Gao P, Li S J, Lash G G, 2021: Stratigraphic framework, redox history, and organic matter accumulation of an Early Cambrian intraplatfrom basin on the Yangtze Platform, South China[J]. Marine and Petroleum Geology, 130, 105095-.
|
[44] |
Wang N, Wen L, Li M J, 2021: The origin of abnormally 13[J]. Marine and Petroleum Geology, 128, 105051-.
|
[45] |
赵立可, 李文皓, 和源, 2020: 四川盆地麦地坪组—筇竹寺组沉积充填规律及勘探意义[J]. 天然气勘探与开发, 43, 30-38.
|
Zhao Like, Li Wenhao, He Yuan, et al. Sedimentation and filling laws of Maidiping-Qiongzhusi Formations in Sichuan Basin and their significance of oil and gas geological exploration[J]. Natural Gas Exploration and Development, 2020, 43(3): 30-38. |
[46] |
王承红. 井研—犍为地区下寒武统筇竹寺组海相页岩孔隙演化[D]. 成都:成都理工大学,2017. |
Wang Chenghong. The Lower Cambrain marine shale porosity evolution of Qiongzhusi Formation in Jingyan-Qianwei area[D]. Chengdu: Chengdu University of Technology, 2017. |
[47] |
王鹏威, 刘忠宝, 金之钧, 2019: 川西南地区下寒武统筇竹寺组页岩气纵向差异富集主控因素[J]. 地球科学, 44, 3628-3638.
|
Wang Pengwei, Liu Zhongbao, Jin Zhijun, et al. Main control factors of shale gas differential vertical enrichment in Lower Cambrian Qiongzhusi Formation, southwest Sichuan Basin, China[J]. Earth Science, 2019, 44(11): 3628-3638. |
[48] |
邱振, 韦恒叶, 刘翰林, 2021: 异常高有机质沉积富集过程与元素地球化学特征[J]. 石油与天然气地质, 42, 931-948.
|
Qiu Zhen, Wei Hengye, Liu Hanlin, et al. Accumulation of sediments with extraordinary high organic matter content: Insight gained through geochemical characterization of indicative elements[J]. Oil & Gas Geology, 2021, 42(4): 931-948. |
[49] |
周国晓, 魏国齐, 胡国艺, 2020: 四川盆地早寒武世裂陷槽西部页岩发育背景与有机质富集[J]. 天然气地球科学, 31, 498-506.
|
Zhou Guoxiao, Wei Guoqi, Hu Guoyi, et al. The development setting and the organic matter enrichment of the Lower Cambrian shales from the western rift trough in Sichuan Basin[J]. Natural Gas Geoscience, 2020, 31(4): 498-506. |
[50] |
刘建清, 何利, 何平, 2021: 康滇古陆东缘筇竹寺组地球化学特征及意义:以云南省昭通市昭阳区锌厂沟剖面为例[J]. 沉积学报, 39, 1305-1319.
|
Liu Jianqing, He Li, He Ping, et al. Geochemical characteristics and significance of the Qiongzhusi Formation on the eastern margin of the ancient Kangding-Yunnan land: Taking the Xinchanggou section of Zhaoyang district, Zhaotong city, Yunnan province as an example[J]. Acta Sedimentologica Sinica, 2021, 39(5): 1305-1319. |
[51] |
易婷, 周文, 杨璠, 2020: 四川盆地龙马溪组页岩气储层石英类型与特征[J]. 矿物学报, 40, 127-136.
|
Yi Ting, Zhou Wen, Yang Fan, et al. Types and characteristics of quartzs in shale gas reservoirs of the Longmaxi Formation, Sichuan Basin, China[J]. Acta Mineralogica Sinica, 2020, 40(2): 127-136. |
[52] |
蒋柯, 周文, 邓乃尔, 2020: 四川盆地五峰组—龙马溪组页岩储层中黄铁矿特征及地质意义[J]. 成都理工大学学报(自然科学版), 47, 50-64.
|
Jiang Ke, Zhou Wen, Deng Naier, et al. Characteristics and geological significance of pyrites in Wufeng and Longmaxi Formation reservoir shale in Sichuan Basin, China[J]. Journal of Chengdu University of Technology (Science & Technology Edition), 2020, 47(1): 50-64. |
[53] |
Milliken K L, Rudnicki M, Awwiller D N, 2013: Organic matter-hosted pore system, Marcellus Formation (Devonian), Pennsylvania[J]. AAPG Bulletin, 97, 177-200.
|
[54] |
胡东风, 张汉荣, 倪楷, 2014: 四川盆地东南缘海相页岩气保存条件及其主控因素[J]. 天然气工业, 34, 17-23.
|
Hu Dongfeng, Zhang Hanrong, Ni Kai, et al. Main controlling factors for gas preservation conditions of marine shales in southeastern margins of the Sichuan Basin[J]. Natural Gas Industry, 2014, 34(6): 17-23. |
[55] |
郭旭升, 赵永强, 申宝剑, 2022: 中国南方海相页岩气勘探理论:回顾与展望[J]. 地质学报, 96, 172-182.
|
Guo Xusheng, Zhao Yongqiang, Shen Baojian, et al. Marine shale gas exploration theory in southern China: Review and prospects[J]. Acta Geologica Sinica, 2022, 96(1): 172-182. |
[56] |
周慧, 李伟, 张宝民, 2015: 四川盆地震旦纪末期—寒武纪早期台盆的形成与演化[J]. 石油学报, 36, 310-323.
|
Zhou Hui, Li Wei, Zhang Baomin, et al. Formation and evolution of Upper Sinian to Lower Cambrian intraplatformal basin in Sichuan Basin[J]. Acta Petrolei Sinica, 2015, 36(3): 310-323. |
[57] |
周文, 徐浩, 余谦, 2016: 四川盆地及其周缘五峰组—龙马溪组与筇竹寺组页岩含气性差异及成因[J]. 岩性油气藏, 28, 18-25.
|
Zhou Wen, Xu Hao, Yu Qian, et al. Shale gas-bearing property differences and their genesis between Wufeng-Longmaxi Formation and Qiongzhusi Formation in Sichuan Basin and surrounding areas[J]. Lithologic Reservoirs, 2016, 28(5): 18-25. |
[58] |
刘若冰, 2015: 超压对川东南地区五峰组—龙马溪组页岩储层影响分析[J]. 沉积学报, 33, 817-827.
|
Liu Ruobing. Analyses of influences on shale reservoirs of Wufeng-Longmaxi Formation by overpressure in the south-eastern part of Sichuan Basin[J]. Acta Sedimentologica Sinica, 2015, 33(4): 817-827. |
[59] |
曹茜, 温真桃, 徐浩, 2021: 川南D区龙马溪组页岩有机质孔隙发育特征及影响因素[J]. 成都理工大学学报(自然科学版), 48, 599-609.
|
Cao Qian, Wen Zhentao, Xu Hao, et al. Development characteristics and influencing factors of organic matter pores in Longmaxi Formation shale in D area, southern Sichuan Basin, China[J]. Journal of Chengdu University of Technology (Science & Technology Edition), 2021, 48(5): 599-609, 625. |