ZHANG Boqiao, MENG Zhiyong, LIU Li, LI Kai, LIU Chao, SHU Zhiheng. Significance of shale gas genesis to the development of Guanyinqiao Member, Wufeng Formation, Fuling area, Sichuan Basin[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2018, 40(1): 30-37. doi: 10.11781/sysydz201801030
Citation: ZHANG Boqiao, MENG Zhiyong, LIU Li, LI Kai, LIU Chao, SHU Zhiheng. Significance of shale gas genesis to the development of Guanyinqiao Member, Wufeng Formation, Fuling area, Sichuan Basin[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2018, 40(1): 30-37. doi: 10.11781/sysydz201801030

Significance of shale gas genesis to the development of Guanyinqiao Member, Wufeng Formation, Fuling area, Sichuan Basin

doi: 10.11781/sysydz201801030
  • Received Date: 2017-10-13
  • Rev Recd Date: 2017-12-04
  • Publish Date: 2018-01-28
  • The widely developed Guanyinqiao Member at the top of the Wufeng Formation, Fuling area shows horizontally variable lithology and thickness. There are two main views about the causes of this variability:deep water genesis theory and shallow water genesis theory. This study combined various factors, including sedimentation rate and ecological characteristics, to indicate that the Wufeng Formation was a typical deep water allochthonous deposit. Underflow deposition was the main reason why the underlying Guanyinqiao Member was well developed. Meanwhile, strong underflow sedimentation was the main cause for the lack of Guanyinqiao Member in several areas. Additionally, this work investigated the effect of Guanyinqiao Member on the evaluation of shale gas development from the sedimentary and engineering technological transformation perspectives. The horizontal distribution characteristics of Guanyinqiao Member showed the horizontal differences of three geological elements, including the active degree of underflow deposition, the micro palaeogeomorphology and the distance to source area of gas-bearing shale in the Wufeng-Longmaxi formations, Fuling area. These differences had important effects on the deposition of gas-bearing shale of the Wufeng-Longmaxi formations and the overlying Long2 Member. Therefore, the formation characteristics of Guanyinqiao Member can be used as an important evaluation index for gas-bearing shale strata exploration and development in the Wufeng-Longmaxi formations, South China. Besides, the engineering technological transformation of Guanyinqiao Member is challenging. It is located in the main zone, and should be given full consideration when optimizing the horizontal section of development well.

     

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  • [1]
    聂海宽,包书景,高波,等.四川盆地及其周缘上奥陶统-下志留统页岩气成藏体系研究[J].石油实验地质,2012,34(2):115-119. NIE Haikuan,BAO Shujing,GAO Bo,et al.Accumulation system for shale gas from Upper Ordovician to Lower Silurian in Sichuan Basin and surrounding areas[J].Petroleum Geology & Experiment,2012,34(2):115-119.
    [2]
    张淼,陈孝红,王传尚.湖北宜昌王家湾五峰组顶部Chondrites的发现及其环境意义[J].华南地质与矿产,2008,(3):74-78. ZHANG Miao,CHEN Xiaohong,WANG Chuanshang.Discovery of Chondrites in uppermost Wufeng Formation,in Wangjiawan Section,Yichang,Hubei,and its environment signification[J].Geology and Mineral Resources of South China,2008,(3):74-78.
    [3]
    龚一鸣.遗迹化石Chondrites的指相意义和阶层分布[J].古生物学报,2004,43(1):94-102. GONG Yiming.Facies characteristics and tiering distributions of chondrites[J].Acta Palaeontologica Sinica,2004,43(1):94-102.
    [4]
    穆恩之.论五峰页岩[J].古生物学报,1954,2(2):153-170. MU Enzhi.The graptolite shale[J].Acta Palaeontologica Sinica,1954,2(2):153-170.
    [5]
    戎嘉余.上扬子区晚奥陶世海退的生态地层证据与冰川活动影响[J].地层学杂质,1984,8(1):19-29. RONG Jiayu.Ecostratigraphic evidence of the Upper Ordovician regressive sequences and the effect of glaciation[J].Journal of Stratigraphy,1984,8(1):19-29.
    [6]
    陈旭,丘金玉.宜昌奥陶纪的古环境演变[J].地层学杂志,1986,10(1):1-15. CHEN Xu,QIU Jinyu.Ordovician palaeoenvironmental reconstruction of Yichang area,Hubei[J].Journal of Stratigraphy,1986,10(1):1-15.
    [7]
    冯洪真,俞剑华.五峰期上扬子海古盐度分析[J].地层学杂志,1993,17(3):179-185. FENG Hongzhen,YU Jianhua.Analysis of paleosalinity during the Wufeng age in Upper Yangtze Sea[J].Journal of Stratigraphy,1993,17(3):179-185.
    [8]
    方一亭,边立曾,俞剑华,等.晚奥陶世五峰期扬子板块沉积模式[J].沉积学报,1993,11(3):7-12. FANG Yiting,BIAN Lizeng,YU Jianhua,et al.Sedimentary environment pattern of Yangtz Plate in Wufeng age of Late Ordovician[J].Acta Sedimentologica Sinica,1993,11(3):7-12.
    [9]
    SCHOPF T J M.Paleoceanography[M].Harvard:Harvard University Press,1980.
    [10]
    徐论勋,肖传桃,龚文平,等.论扬子地区上奥陶统五峰组观音桥段的深海成因[J].地质学报,2004,78(6):726-732. XU Lunxun,XIAO Chuantao,GONG Wenping,et al.A study on the deep-sea sediment of the Guanyinqiao Member of the Upper Ordovician Wufeng Formation in the Yangtze area[J].Acta Geologica Sinica,2004,78(6):726-732.
    [11]
    SHEEHAN P M.1973.The relation of Late Ordovician glaciation to the Ordovician-Silurian changeover in North American brachiopod faunas[M].Lethaia,1973,6(2):147-154.
    [12]
    肖传桃,姜衍文,朱忠德,等.湖北宜昌地区奥陶纪层序地层及扬子地区五峰组沉积环境的讨论[J].高校地质学报,1996,2(3):339-346. XIAO Chuantao,JIANG Yanwen,ZHU Zhongde,et al.A study on Ordovician sequence stratigraphy in Yichang District,Hubei Provience and sedimentary environment of the Wufeng Formation in Yangtze area[J].Geological Journal of China Universities,1996,2(3):319-327.
    [13]
    殷鸿福.中国古生物地理学[M].武汉:中国地质大学出版社,1988:1-90. YIN Hongfu.China palaeobiogeography[M].Wuhan:China University of Geosciences,1988:1-90.
    [14]
    BROMLEY R G,EKDALE A A.Chondrites:A trace fossil indicator of anoxia in sediments[J].Science,1984,224(4651):872-874.
    [15]
    陈旭,戎嘉余,樊隽轩,等.奥陶系上统赫南特阶全球层型剖面和点位的建立[J].地层学杂志,2006,30(4):289-305. CHEN Xu,RONG Jiayu,FAN Junxuan,et al.A final report on the global stratotype section and point (GSSP) for the Hirnantian stage (Upper Ordovician)[J].Journal of Stratigraphy,2006,30(4):289-305.
    [16]
    BRENCHLEY P J,CARDEN G A,HINTS L,et al.High-resolution stable isotope stratigraphy of Upper Ordovician sequences:Constraints on the timing of bioevents and environmental changes associated with mass extinction and glaciation[J].Geological Society of America Bulletin,2003,115(1):89-104.
    [17]
    KUMP L R,ARTHUR M A.Interpreting carbon-isotope excursions:Carbonates and organic matter[J].Chemical Geology,1999,161(1/3):181-198.
    [18]
    黄志诚,黄钟瑾,陈智娜.下扬子区五峰组火山碎屑岩与放射虫硅质岩[J].沉积学报,1991,9(2):1-15. HUANG Zhicheng,HUANG Zhongjin,CHEN Zhina.Volcanic rock and radiolarian Silicilith of Wufeng Formation in Lower Yangtze region[J].Acta Sedimentologica Sinica,1991,9(2):1-15.
    [19]
    苏文博,何龙清,王永标,等.华南奥陶-志留系五峰组及龙马溪组底部斑脱岩与高分辨综合地层[J].中国科学(D辑),2002,32(3):207-209. SU Wenbo,HE Longqing,WANG Yongbiao,et al.K-bentonite beds and high-resolution integrated stratigraphy of the uppermost Ordovician Wufeng and the lowest Silurian Longmaxi formations in South China[J].Science in China Series D:Earth Sciences,2003,46(11):1121-1133.
    [20]
    姜衍文,吴智勇,王泽中.深海等深流沉积研究进展[M].西安:西北大学出版社,1993:5-167. JIANG Yanwen,WU Zhiyong,WANG Zezhong.Research progress of contour current in deep water[M].Xi'an:Northwestern University Press,1993:5-167.
    [21]
    高振中.深水牵引流沉积-内潮汐、内波和等深流沉积研究[M].北京:科学出版社,1996:108-112. GAO Zhenzhong.Deep-water tractive current deposits[M].Beijing:Science Press,1996:108-112.
    [22]
    段太忠,郭建华,高振中,等.华南古大陆边缘湘北九溪下奥陶统碳酸盐等深岩丘[J].地质学报,1990,64(2):131-143. DUAN Taizhong,GUO Jianhua,GAO Zhenzhong,et al.A Lower Ordovician carbonate contourite drift on the margin of the South China Palaeocontinent in Jiuxi,Northern Hunan[J].Acta Geologica Sinica,1990,64(2):131-143.
    [23]
    JONES B G,FERGUSSON C L,ZAMBELLI P F.Ordovician contourite of lakelan folder in East Australia[C]//Advance of Study on Deep-Sea Contourite Sedimentology.Xibei University Press,1993:5-167.
    [24]
    王琦,朱而勤.海洋地质学[M].北京:科学出版社,1989:108-112. WANG Qi,ZHU Erqin.Marine geology[M].Beijing:Science Press,1989:108-112.
    [25]
    沈锡昌,郭步英.海洋地质学[M].武汉:中国地质大学出版社,1993:138-184. SHEN Xichang,GUO Buying.Marine geology[M].Wuhan:China Geology University Press,1993:138-184.
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