Accumulation conditions and strategic selection of favorable areas of shale gas of the Lower Paleozoic in Chongqing area
Jin Fengxian1, Shao Longyi1, Liang Feng2, 3, Lin Wen2, 3, Li Li1, Zhao Qun2, 3
1 College of Geosciences and Survey Engineering,China University of Mining and Technology(Beijing),Beijing 100083; 2 Langfang Branch,Research Institute of Petroleum Exploration & Development,PetroChina,Langfang 065007,Hebei; 3 National Energy Shale Gas R & D(Experiment)Centre,Langfang 065007,Hebei
Abstract Chongqing area is the breakthrough area of shale gas exploration and development,and the shale gas is preserved in the Upper Ordovician Wufeng Formation-Lower Silurian Longmaxi Formation of the Lower Paleozoic. Based on data from outcrop,drilling core and logging data, using sedimentology,organic geochemistry and other methods, the characteristics of sedimentology of shales,and the shale gas accumulation conditions was analyzed and the favorable areas for shale gas exploration of study area were predicted. The results showed that the dark shale in Chongqing area had a great thickness and a broad distribution, with the content of total organic carbon being more than 2% and the organic matter type being type I. The thermal evolution was in high mature-over mature stage which indicated the shale have a better hydrocarbon ̄generating potential. The target dark shale horizon was overlain by a thick sequence of shales and underlain by thick modular limestones and micritic limestones, which provided a deal preservation effect for shale gas. The content of gas was much higher and the average gas content being 1.39,cm3/t. The integrated information overlapping method was used to predict favorable areas of shale gas exploration, and two favorable areas were predicted, including the Chengkou-Wuxi area and the Shizhu-Fuling-Wulong-Pengshui-Nanchuan-Qijiang area.
Fund:Financially supported by the National Natural Science Foundation of China(No. 41572090)
About author: About the first author Jin Fengxian,born in 1989,graduated from China University of Mining and Technology(Beijing) with her master degree in 2016. She is mainly engaged in coal sedimentology and sequence stratigraphy. E-mail: 1185673205@qq.com.About the corresponding author Shao Longyi,born in 1964,is a professor of China University of Mining and Technology(Beijing). He is mainly engaged in coal sedimentology and sequence stratigraphy. E-mail: ShaoL@cumtb.edu.cn.
Cite this article:
Jin Fengxian,Shao Longyi,Liang Feng et al. Accumulation conditions and strategic selection of favorable areas of shale gas of the Lower Paleozoic in Chongqing area[J]. JOPC, 2017, 19(2): 341-352.
Jin Fengxian,Shao Longyi,Liang Feng et al. Accumulation conditions and strategic selection of favorable areas of shale gas of the Lower Paleozoic in Chongqing area[J]. JOPC, 2017, 19(2): 341-352.
1 毕赫,姜振学,李鹏,李卓,唐相路,张定宇,许野. 2014. 渝东南地区黔江凹陷五峰组—龙马溪组页岩储集层特征及其对含气量的影响. 天然气地球科学,25(8): 1275-1283. [Bi H,Jiang Z X,Li P,Li Z, Tang X L,Zhang D Y,Xu Y. 2014. Shale reservoir characteristics and its influence on gas content of Wufeng-Longmaxi Formations in the southeastern Chongqing. Natural Gas Geoscience,25(8): 1275-1283] 2 董大忠,邹才能,李建忠,王社教,李新景,王玉满,李登华,黄金亮. 2011. 页岩气资源潜力与勘探开发前景. 地质通报,30(2/3): 324-336. [Dong D Z,Zou C N,Li J Z,Wang S J,Li X J,Wang Y M,Li D H,Huang J L. 2011. Resource potential,exploration and development prospect of shale gas in the whole world. Geological Bulletin of China,30(2/3): 324-336] 3 高彩霞,邵龙义,朱长生,双燕,李长林,高彩红. 2012. 重庆地区晚二叠世层序—古地理及聚煤特征. 现代地质,26(3): 508-517. [Gao C X,Shao L Y,Zhu C S,Shuang Y,Li C L,Gao C H. 2012. Sequence-palaeogeography and coal accumulation of Chongqing Area in Late Permian. Geoscience,26(3): 508-517] 4 郭彤楼,刘若冰. 2013. 复杂构造区高演化程度海相页岩气勘探突破的启示: 以四川盆地东部盆缘JY1井为例. 天然气地球科学,24(4): 643-651. [Guo T L,Liu R B. 2013. Implications from marine shale gas exploration breakthrough in complicated structural area at high thermal stage: Taking Longmaxi Formation in well JY1 as an example. Natural Gas Geoscience,24(4): 643-651] 5 郭旭升. 2014. 南方海相页岩气“二元富集”规律: 四川盆地及周缘龙马溪组页岩气勘探实践认识. 地质学报,88(7): 1209-1218. [Guo X S. 2014. Rules of two-factor enrichment for marine shale gas in Southern China: Understanding from the Longmaxi Formation shale gas in Sichuan Basin and its surrounding area. Acta Geologica Sinica,88(7): 1209-1218] 6 郭旭升,胡东风,文治东,刘若冰. 2014. 四川盆地及周缘下古生界海相页岩气富集高产主控因素: 以焦石坝地区五峰组—龙马溪组为例. 中国地质,41(3): 893-901. [Guo X S,Hu D F,Wen Z D,Liu R B. 2014. Major factors controlling the accumulation and high productivity in marine shale gas in the Lower Paleozoic of Sichuan Basin and its periphery: A case study of the Wufeng-Longmaxi Formation of Jiaoshiba area. Geology in China,41(3): 893-901] 7 何治亮,聂海宽,张钰营. 2016. 四川盆地及其周缘奥陶系五峰组—龙马溪组页岩气富集主控因素分析. 地学前缘,23(1): 1-10. [He Z L,Nie H K,Zhang Y Y. 2016. The main factors of shale gas enrichment of Ordovician Wufeng Formation-Silurian Longmaxi in the Sichuan Basin and its adjacent areas. Earth Science Frontiers,23(1): 1-10] 8 黄金亮,邹才能,李建忠,董大忠,王社教,王世谦,王玉满,李登华. 2012. 川南志留系龙马溪组页岩气形成条件与有利区分析. 煤炭学报,37(5): 782-787. [Huang J L,Zou C N,Li J Z,Dong D Z,Wang S J,Wang S Q,Wang Y M,Li D H. 2012. Shale gas accumulation conditions and favorable zones of Silurian Longmaxi Formation in south Sichuan Basin. Journal of China Coal Society,37(5): 782-787] 9 黄籍中. 1986. 四川盆地下古生界至元古界热演化气及其勘探方向. 天然气工业,6(4): 8-13. [Huang J Z. 1986. Thermal evolution gas in Lower Paleozoic to Proterozoic of Sichuan Basin and its exploration prospects. Natural Gas Industry,6(4): 8-13] 10 梁狄刚,郭彤楼,陈建平,边立曾,赵喆. 2008. 中国南方海相生烃成藏研究的若干进展(一): 南方四套区域性海相烃源岩的分布. 海相油气地质,13(3): 1-16. [Liang D G,Guo T L,Chen J P,Bian L Z,Zhao Z. 2008. Some progresses on studies of hydrocarbon generation and accumulation in marine sedimentary regions,Southern China(Part 1): Distribution of four suits of regional marine source rocks. Marine Origin Petroleum Geology,13(3): 1-16] 11 刘树根,徐国盛,徐国强,雍自权,李国蓉,李巨初. 2004. 四川盆地天然气成藏动力学初探. 天然气地球科学,15(4): 323-330. [Liu S G,Xu G S,Xu G Q,Yong Z Q,Li G R,Li J C. 2004. Primary study on the dynamics of natural gas pools in Sichuan Basin. Natural Gas Geoscience,15(4): 323-330] 12 刘若冰,田景春,魏志宏,张明文,钟水清,张光华,王碧. 2006. 川东南地区震旦系—志留系下组合有效烃源岩综合研究. 天然气地球科学,17(6): 824-828. [Liu R B,Tian J C,Wei Z H,Zhang M W,Zhong S Q,Zhang G H,Wang B. 2006. Comprehensive research of effective hydrocarbon source rock of lower strata from Sinian to Silurian System in southeast area of Sichuan Province. Natural Gas Geoscience,17(6): 824-828] 13 龙鹏宇,张金川,唐玄,聂海宽,刘珠江,韩双彪,朱亮亮. 2011. 泥页岩裂缝发育特征及其对页岩气勘探和开发的影响. 天然气地球科学,22(3): 525-532. [Long P Y,Zhang J C,Tang X,Nie H K,Liu Z J,Han S B,Zhu L L. 2011. Feature of muddy shale fissure and its effect for shale gas exploration and development. Natural Gas Geoscience,22(3): 525-532] 14 龙鹏宇,张金川,李玉喜,唐玄,程礼军,刘珠江,韩双彪. 2012. 重庆及其周缘地区下古生界页岩气成藏条件及有利区预测. 地学前缘,19(2): 221-233. [Long P Y Zhang J C, Li Y X, Tang X, Cheng L J, Liu Z J, Han S B. 2012. Reservoir-forming conditions and strategic select favorable area of shale gas in the Lower Paleozoic of Chongqing and its adjacent areas. Earth Science Frontiers,19(2): 221-233] 15 牟传龙,王秀平,王启宇,周恳恳,梁薇,葛祥英,陈小炜. 2016. 川南及邻区下志留统龙马溪组下段沉积相与页岩气地质条件的关系. 古地理学报,18(3):457-472. [Mou C L, Wang X P, Wang Q Y, Zhou K K, Liang W, Ge X Y, Chen X W. 2016. Relationship between sedimentary facies and shale gas geological conditions of the Lower Silurian Longmaxi Formation in southern Sichuan Basin and its adjacent areas. Journal of Palaeogeography(Chinese Edition), 18(3):457-472] 16 聂海宽,唐玄,边瑞康. 2009. 页岩气成藏控制因素及中国南方页岩气发育有利区预测. 石油学报,30(4): 484-491. [Nie H K,Tang X,Bian R K. 2009. Controlling factors for shale gas accumulation and prediction of potential development area in shale gas reservoir of South China. Acta Petrolei Sinica,30(4): 484-491] 17 聂海宽,张金川,包书景,边瑞康,宋晓蛟,刘建斌. 2012. 四川盆地及其周缘上奥陶统—下志留统页岩气聚集条件. 石油与天然气地质,33(3): 335-345. [Nie H K,Zhang J C,Bao S J,Bian R K,Song X J,Liu J B. 2012. Shale gas accumulation conditions of the Upper Ordovician-Lower Silurian in Sichuan Basin and its periphery. Oil & Gas Geology,33(3): 335-345] 18 孙梦迪,于炳松,夏威,祁青山,叶若辰. 2014. 渝东南地区下志留统底部黑色岩系沉积环境及有机质富集机制: 以鹿角剖面为例. 东北石油大学学报,5(8): 51-60. [Sun M D,Yu B S,Xia W,Qi Q S,Ye R C. 2014. Depositional setting and enrichment mechanism of organic matter of the lower Silurian black shale series in the southeast of Chongqing: A case study from Lu Jiao outcrop section. Journal of Northeast Petroleum University,5(8): 51-60] 19 邵龙义,李猛,李永红,张云鹏,鲁静,张文龙,田政,文怀军. 2014. 柴达木盆地北缘侏罗系页岩气地质特征及控制因素. 地学前缘,21(4): 311-322. [Shao L Y,Li M,Li Y H,Zhang Y P,Lu J,Zhang W L,Tian Z,Wen H J. 2014. Geological characteristics and controlling factors of shale gas in the Jurassic of the northern Qaidam Basin. Earth Science Frontiers,21(4): 311-322] 20 邵龙义,刘磊,文怀军,李永红,张文龙,李猛. 2016. 柴北缘盆地YQ-1井中侏罗统石门沟组泥页岩纳米孔隙特征及影响因素. 地学前缘,23(1): 164-173. [Shao L Y,Liu L,Wen H J,Li Y H,Zhang W L,Li M. 2016. Characteristics and influencing factors of nanopores in the Middle Jurassic Shimengou shale in Well YQ-1 of the Northern Qaidam Basin. Earth Science Frontiers,23(1): 164-173] 21 腾格尔,高长林,胡凯,潘文蕾,张长江,方成名,曹清古. 2006. 上扬子东南缘下组合优质烃源岩发育及生烃潜力. 石油实验地质,28(4): 360-365. [Teng G E,Gao C L,Hu K,Pan W L,Zhang C J,Fang C M,Cao Q G. 2006. High-quality source rock sin the lower combination in southeast upper-Yangtze area and their hydrocarbon generating potential. Petroleum Geology & Experiment,28(4): 360-365] 22 腾格尔,高长林,胡凯,方成名,吕俊祥,翟常博,张长江. 2007. 上扬子北缘下组合优质烃源岩分布及生烃潜力评价. 天然气地球科学,18(2): 254-259. [Teng G E,Gao C L,Hu K,Fang C M,Lü J X,Zhai C B,Zhang C J. 2007. High quality source rock so flower combination in the northern upper-Yangtze area and their hydrocarbon potential. Natural Gas Geoscience,18(2): 254-259] 23 许效松,万方,尹福光,陈明. 2001. 奥陶系宝塔组灰岩的环境相、生态相与成岩相. 矿物岩石,21(3): 64-68. [Xu X S, Wan F, Yin F G, Chen M. 2001. Environment facies,ecological facies and diagenetic facies of Baota Formation,of Late Ordovina. Journal of Mineral Petrology,21(3): 64-68] 24 曾祥亮. 2011. 四川盆地及其周缘下志留统龙马溪组页岩气研究. 成都理工大学硕士学位论文. [Zeng X L. 2011. A Study on Shale Gas of Lower Silurian Longmaxi Formation in Sichuan Basin and Its Peripheral Areas. Master's Dissertation of Chengdu University of Technology] 25 张金川,聂海宽,徐波,姜生玲,张培先. 2008. 四川盆地页岩气成藏地质条件. 天然气工业,28(2): 151-156. [Zhang J C, Nie H K,Xu B,Jiang S L,Zhang P X. 2008. Geological condition of shale gas accumulation in Sichuan Basin. Natural Gas Industry,28(2): 151-156] 26 张金川,金之钧,袁明生. 2004. 页岩气成藏机理和分布. 天然气工业,24(7): 15-18. [Zhang J C, Jin Z J, Yuan M S. 2004. Reservoiring mechanism of shale gas and its distribution. Natural Gas Industry,24(7): 15-18] 27 郑和荣,高波,彭勇民,聂海宽,杨斐然. 2013. 中上扬子地区下志留统沉积演化与页岩气勘探方向. 古地理学报,15(5):645-656. [Zheng H R, Gao B, Peng Y M, Nie H K, Yang F R. 2013. Sedimentary evolution and shale gas exploration direction of the Lower Silurian in Middle-Upper Yangtze area. Journal of Palaeogeography(Chinese Edition), 15(5):645-656] 28 Donaldson E C,Kendall R F,Baker B A. 1975. Surface-area measurement of geologic materials. SPE Journal,15(2): 111-116. 29 Sing K W,Everett D H,Haul R W, Moscou L, Pierotti R A, Rouquerol J, Siemieniewska T. 1985. Reporting physisorption data for gas/solid systems with special reference to determination of surface area and porosity. Pure and Applied Chemistry,57(4): 603-619. 30 Sondergeld C H,Newsham K E,Comisky J T,Rice M C, Rai C S. 2010. Petrophysical considerations in evaluating and producing shale gas resources. SPE Unconventional Gas Conference. Pittsburgh: Pennsylvania. 31 Warlick D. 2006. Gas shale and CBM development in North America. Oil and Gas Financial Journal,3(11): 1-5.