Liu Guangxiang, Luo Kaiping, Zhang Changjiang, Guan Honglin, Cao Qinggu, Chen Yongfeng. Dynamic evolution of the hydrocarbon kitchen in the Lower Cambrian, Sichuan Basin[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2017, 39(3): 295-303. doi: 10.11781/sysydz201703295
Citation: Liu Guangxiang, Luo Kaiping, Zhang Changjiang, Guan Honglin, Cao Qinggu, Chen Yongfeng. Dynamic evolution of the hydrocarbon kitchen in the Lower Cambrian, Sichuan Basin[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2017, 39(3): 295-303. doi: 10.11781/sysydz201703295

Dynamic evolution of the hydrocarbon kitchen in the Lower Cambrian, Sichuan Basin

doi: 10.11781/sysydz201703295
  • Received Date: 2016-02-25
  • Rev Recd Date: 2017-04-20
  • Publish Date: 2017-05-28
  • The Lower Paleozoic marine source rocks in the Sichuan Basin became mature during the early stage and are over mature now. The hydrocarbon kitchen changed from a kerogen pyrolysis type to an ancient oil reservoir cracking type, resulting in successive hydrocarbon supply, which controlled hydrocarbon accumulation in the Lower Paleozoic highly mature and over mature strata. As a result, the analysis and accurate identification of the dynamic evolution of hydrocarbon kitchen is fundamental for exploration. We studied the tectonic, sedimentary evolution and thermal systems in the Sichuan Basin, and described the distribution of the kerogen type hydrocarbon kitchen in the Lower Cambrian Niutitang Formation using a TSM basin modelling system, based on the burial, thermal evolution and hydrocarbon generation histories of source rocks. We also identified the location of the ancient oil kitchen and dynamically traced the hydrocarbon kitchen using an accumulation probability method, combined with the analyses of ancient structure, fluid potential and effective reservoir. The Niutitang source rocks generated and discharged hydrocarbon during the Caledonian and Hercynian periods, and the kitchen center was found in Ziyang, Yibin, and Chishui in the southwest, Xiushan and Lichuan in the east, and in the northeastern margin of the Sichuan Basin. At the end of Late Indosinian, most source rocks were over mature and had expelled a large amount of hydrocarbon. Ancient oil kitchens took the role of hydrocarbon supply instead of kerogen pyrolysis kitchens, and were found mainly in Ziyang, Chongqing, Yibin and the southern, northern, and northeastern margins of the basin.

     

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  • [1]
    刘树根,马永生,蔡勋育,等.四川盆地震旦系下古生界天然气成藏过程和特征[J].成都理工大学学报(自然科学版),2009,36(4):345-354. Liu Shugen,Ma Yongsheng,Cai Xunyu,et al.Characteristic and accumulation process of the natural gas from Sinian to Lower Paleozoic in Sichuan Basin,China[J].Journal of Chengdu University of Technology (Science & Technology Edition),2009,36(4):345-354.
    [2]
    蔡立国,金之钧,陈孔全,等.中国海相层系油气基本特点与潜力[J].石油与天然气地质,2008,29(5):559-564. Cai Liguo,Jin Zhijun,Chen Kongquan,et al.Essential feature and potential of hydrocarbon accumulation in China marine sequences[J].Oil & Gas Geology,2008,29(5):559-564.
    [3]
    杨克明.四川盆地西部中三叠统雷口坡组烃源岩生烃潜力分析[J].石油实验地质,2016,38(3):366-374. Yang Keming.Hydrocarbon potential of source rocks in the Middle Triassic Leikoupo Formation in the Western Sichuan Depression[J].Petroleum Geology & Experiment,2016,38(3):366-374.
    [4]
    伍岳,樊太亮,蒋恕,等.四川盆地南缘上奥陶统五峰组-下志留统龙马溪组页岩矿物组成与脆性特征[J].油气地质与采收率,2015,22(4):59-63. Wu Yue,Fan Tailiang,Jiang Shu,et al.Mineralogy and brittleness features of the shale in the upper Ordovician Wufeng Formation and the lower Silurian Longmaxi Formation in southern Sichuan Basin[J].Petroleum Geology and Recovery Efficiency,2015,22(4):59-63.
    [5]
    董军,王鹏,袁东山,等.四川盆地梓潼凹陷烃源岩与天然气地球化学特征[J].石油实验地质,2015,37(3):367-373. Dong Jun,Wang Peng,Yuan Dongshan,et al.Geochemical characteristics of source rocks and natural gas in Zitong Sag,Sichuan Basin[J].Petroleum Geology & Experiment,2015,37(3):367-373.
    [6]
    秦建中,腾格尔,申宝剑,等.海相优质烃源岩的超显微有机岩石学特征与岩石学组分分类[J].石油实验地质,2015,37(6):671-680. Qin Jianzhong,Tenger Borjin,Shen Baojian,et al.Ultramicroscopic organic petrology characteristics and component classification of excellent marine source rocks[J].Petroleum Geology & Experiment,2015,37(6):671-680.
    [7]
    钟宁宁,赵拮,李艳霞,等.论南方海相层系有效供烃能力的主要控制因素[J].地质学报,2010,84(2):149-158. Zhong Ningning,Zhao Zhe,Li Yanxia,et al.An approach to the main controls on the potential of efficient hydrocarbon supply of marine sequences in South China[J].Acta Geologica Sinica,2010,84(2):149-158.
    [8]
    赵文智,汪泽成,王一刚.四川盆地东北部飞仙关组高效气藏形成机理[J].地质论评,2006,52(5):708-718. Zhao Wenzhi,Wang Zecheng,Wang Yigang.Formation mechanism of highly effective gas pools in the Feixianguan Formation in the NE Sichuan Basin[J].Geological Review,2006,52(5):708-718.
    [9]
    董才源,杨威,武赛军.川东石炭系气藏类型及富集特征研究[J].断块油气田,2014,21(5):564-568. Dong Caiyuan,Yang Wei,Wu Saijun.Type and enrichment characteristics of Carboniferous gas reservoir in east Sichuan Basin[J].Fault-Block Oil and Gas Field,2014,21(5):564-568.
    [10]
    燕继红,李启桂,朱祥.四川盆地及周缘下寒武统页岩气成藏主控因素与勘探方向[J].石油实验地质,2016,38(4):445-452. Yan Jihong,Li Qigui,Zhu Xiang.Main factors controlling shale gas accumulation and exploration targets in the Lower Cambrian,Sichuan Basin and its periphery[J].Petroleum Geology & Experiment,2016,38(4):445-452.
    [11]
    邱登峰,李双建,袁玉松,等.中上扬子地区地史模拟及其油气地质意义[J].油气地质与采收率,2015,22(4):6-13. Qiu Dengfeng,Li Shuangjian,Yuan Yusong,et al.Geohistory modeling and its petroleum geological significance of Middle-Upper Yangtze area[J].Petroleum Geology and Recovery Efficiency,2015,22(4):6-13.
    [12]
    申宝剑,仰云峰,腾格尔,等.四川盆地焦石坝构造区页岩有机质特征及其成烃能力探讨:以焦页1井五峰-龙马溪组为例[J].石油实验地质,2016,38(4):480-488. Shen Baojian,Yang Yunfeng,Ten ger,et al.Characteristics and hydrocarbon significance of organic matter in shale from the Jiaoshibastructure,Sichuan Basin:A case study of the Wufeng-Longmaxi formations in well Jiaoye1[J].Petroleum Geology & Experiment,2016,38(4):480-488.
    [13]
    Demaison G,Murris R J.Petroleum geochemistry and basin evaluation[M].Tulsa,OK:AAPG,1984.
    [14]
    柳波,刘定勇,郭天旭,等.准噶尔盆地西北缘烃源灶迁移演化及其对油气藏的定位作用[J].石油实验地质,2013,35(6):611-625. Liu Bo,Liu Dingyong,Guo Tianxu,et al.Oil accumulation related to migration of source kitchens in northwestern margin structural belt,Junggar Basin[J].Petroleum Geology & Experiment,2013,35(6):611-625.
    [15]
    汪泽成,赵文智,彭红雨.四川盆地复合含油气系统特征[J].石油勘探与开发,2002,29(2):26-28. Wang Zecheng,Zhao Wenzhi,Peng Hongyu.Characteristics of multi-source petroleum systems in Sichuan Basin[J].Petroleum Exploration and Development,2002,29(2):26-28.
    [16]
    赵文智,王兆云,张水昌,等.油裂解生气是海相气源灶高效成气的重要途径[J].科学通报,2006,51(5):589-595. Zhao Wenzhi,Wang Zhaoyun,Zhang Shuichang,et al.Oil crac-king:An important way for highly efficient generation of gas from marine source rock kitchen[J].Chinese Science Bulletin,2005,50(22):2628-2635.
    [17]
    秦建中.中国烃源岩[M].北京:科学出版社,2005. Qin Jianzhong.Source rocks in China[M].Beijing:Science Press,2005.
    [18]
    郑荣才,李国晖,戴朝成,等.四川类前陆盆地盆-山耦合系统和沉积学响应[J].地质学报,2012,86(1):170-180. Zheng Rongcai,Li Guohui,Dai Chaocheng,et al.Basin-mountain coupling system and its sedimentary response in Sichuan analogous foreland basin[J].Acta Geologica Sinica,2012,86(1):170-180.
    [19]
    徐国盛,袁海锋,马永生,等.川中-川东南地区震旦系-下古生界沥青来源及成烃演化[J].地质学报,2007,81(8):1143-1152. Xu Guosheng,Yuan Haifeng,Ma Yongsheng,et al.The source of Sinian and Lower-Palaeozoic bitumen and hydrocarbon evolution in the middle and southeast of the Sichuan Basin[J].Acta Geologica Sinica,2007,81(8):1143-1152.
    [20]
    徐世琦,张光荣,李国辉,等.加里东古隆起震旦系烃源条件[J].成都理工学院学报,2000,27(S1):131-138. Xu Shiqi,Zhang Guangrong,Li Guhui,et al.The hydrocarbon source condition of Sinian system of the Caledonian Palaeo-uplift[J].Journal of Chengdu University of Technology,2000,27(S1):131-138.
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