Geologic Exploration

Study on the Difference of Pore Characteristics between Marine and Marine-continental Transitional Shale Gas Reservoirs in Upper Yangtze Region, Northwest Guizhou

  • Shi Miao ,
  • Zhang Jinchuan ,
  • Yuan Ye ,
  • Tao Longfeng ,
  • Liu Zhao
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  • 1. Hebei GEO University, Shijiazhuang, Hebei 050031, China;
    2. Key Laboratory of Tectonics and Petroleum Resources, Ministry of Education, Wuhan, Hubei 430074, China;
    3. China University of Geosciences (Beijing), Beijing 100083, China

Received date: 2021-07-12

  Revised date: 2022-03-29

  Online published: 2023-01-09

Abstract

In order to clarify the differences between the pore characteristics of marine and paralic transitional shale, in the case study of Upper Yangtze Region, Northwest Guizhou, the pore characteristics of Longmaxi Formation marine shale, Niutitang Formation shale and Longtan Formation paralic transitional shale widely distributed in the area were studied, and the types and development and distribution patterns of pores inside the shale were analyzed to further explore the causes of difference. The study showed that, the overall pore distribution pattern of marine shale was dominated by organic pores and followed by rigid intergranular pores such as quartz and carbonate minerals, with the relative content of organic pores accounting for more than 50% of the total pores; the diameter of pores in marine-continental transitional shale was greater and more variable than that of marine shale, and the pore distribution pattern was dominated by inorganic intergranular/intragranular pores and microfractures, followed by organic pores, with a large number of dissolved pores/fractures developed in carbonate minerals, and the relative content of organic pores only accounting for about 20% of the total pores. The difference of sedimentary conditions in formation period was the root cause for the difference of pore development between marine and marine-continental transitional shale, and the different preservation conditions in the later stage also had a certain influence. Differential analysis of reservoir pore characteristics provides an important guidance to the exploration and development of shale gas resources.

Cite this article

Shi Miao , Zhang Jinchuan , Yuan Ye , Tao Longfeng , Liu Zhao . Study on the Difference of Pore Characteristics between Marine and Marine-continental Transitional Shale Gas Reservoirs in Upper Yangtze Region, Northwest Guizhou[J]. Special Oil & Gas Reservoirs, 2022 , 29(3) : 9 -17 . DOI: 10.3969/j.issn.1006-6535.2022.03.002

References

[1] 邹才能,赵群,丛连涛,等.中国页岩气开发进展、潜力及前景[J].天然气工业,2021,41(1):1-14.
ZOU Caineng,ZHAO Qun,CONG Liantao,et al.Development progress,potential and prospect of shale gas in China[J].Natural Gas Industry,2021,41(1):1-14.
[2] 蔡勋育,刘金连,张宇,等.中国石化“十三五”油气勘探进展与“十四五”前景展望[J].中国石油勘探,2021,26(1):31-42.
CAI Xunyu,LIU Jinlian,ZHANG Yu,et al.Sinopec's “13th Five-Year” oil and gas exploration progress and the “14th Five-Year” prospect[J].China Petroleum Exploration,2021,26(1):31-42.
[3] 杨跃明,陈玉龙,刘燊阳,等.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,2021,41(1):42-58.
YANG Yueming,CHEN Yulong,LIU Shenyang,et al.Current situation,potential and prospect of shale gas exploration and development in the Sichuan Basin and its surrounding areas[J].Natural Gas Industry,2021,41(1):42-58.
[4] 张金川,韩双彪,唐玄,等.上扬子地区下古生界页岩气地质评价[M].北京:科学出版社,2019:1-17.
ZHANG Jinchuan,HAN Shuangbiao,TANG Xuan,et al.Geological evaluation of Lower Paleozoic shale gas in the Upper Yangtze Region[M].Beijing:Science Press,2019:1-17.
[5] 张鹏,黄宇琪,张金川,等.黔西北寒武系牛蹄塘组与志留系龙马溪组页岩生烃和储集能力差异分析[J].海相油气地质,2019,24(3):83-90.
ZHANG Peng,HUANG Yuqi,ZHANG Jinchuan,et al.Differences in hydrocarbon generation and storage capacity between Cambrian Niutitang Formation and Silurian Longmaxi Formation in northwestern Guizhou[J].Marine Origin Petroleum Geology,2019,24 (3 ):83-90.
[6] 孙梦迪,于炳松,李娟,等.渝东南地区龙马溪组页岩储层特征与主控因素[J].特种油气藏,2014,21(4):63-66.
SUN Mengdi,YU Bingsong,LI Juan,et al.Characteristics and main controlling factors of shale reservoirs in the Longmaxi Formation in southeastern Chongqing[J].Special Oil & Gas Reservoirs,2014,21(4):63-66.
[7] 聂海宽,边瑞康,张培先,等.川东南地区下古生界页岩储层微观类型与特征及其对含气量的影响[J].地学前缘,2014,21(4):331-343.
NIE Haikuan,BIAN Ruikang,ZHANG Peixian,et al.Microscopic types and characteristics of Lower Paleozoic shale reservoirs in southeastern Sichuan and their effects on gas content[J].Earth Science Frontiers,2014,21(4):331-343.
[8] 王中鹏,张金川,孙睿,等.西页1井龙潭组海陆过渡相页岩含气性分析[J].地学前缘,2015,22(2):243-250.
WANG Zhongpeng,ZHANG Jinchuan,SUN Rui,et al.Analysis of gas-bearing properties of shale in Longtan Formation transitional facies in Xiye 1[J].Earth Science Frontiers,2015,22(2):243-250.
[9] 陈斐然,魏祥峰,刘珠江,等.四川盆地二叠系龙潭组页岩孔隙发育特征及主控因素[J]. 天然气地球科学,2020,31(11):1593-1602.
CHEN Feiran,WEI Xiangfeng,LIU Zhujiang,et al.Pore development characteristics and main controlling factors of the Permian marine-continent transitional shale in the Sichuan Basin[J].Natural Gas Geoscience,2020,31(11):1593-1602.
[10] 廖震文,蒋小芳,王生伟,等.上扬子陆块区成矿地质[M].武汉:中国地质大学出版社,2016:3-6.
LIAO Zhenwen,JIANG Xiaofang,WANG Shengwei,et al.The metalogenic geology of the Upper Yangtze Block[M].Wuhan:China University of Geosciences Press,2016:3-6.
[11] ROUQUEROL J,AVNIR D,FAIRBRIDGE C W,et al.Recommendations for the characterization of porous solids[J].Pure and Applied Chemistry,1994, 66(8):1739-1758.
[12] CURTIS M E,SONDERGELD C H,AMBROSE R J,et al.Microstructural investigation of gas shales in two and three dimensions using nanometer-scale resolution imaging[J].AAPG Bulletin,2012,96(4):665-677.
[13] SHI M,YU B,XUE Z P,et al.Pore characteristics of organic-rich shales with high thermal maturity:a case study of the Longmaxi gas shale reservoirs from Well Yuye-1 in southeastern Chongqing,China[J].Journal of Natural Gas Science and Engineering,2015,26:948-959.
[14] ZHANG Q,PANG Z L,ZHANG J C,et al.Qualitative and quantitative characterization of a transitional shale reservoir: a case study from the Upper Carboniferous Taiyuan shale in the eastern uplift of Liaohe Depression, China[J].Marine and Petroleum Geology,2017,80:307-320.
[15] LOUCKS R G,RUPPEL S C.Mississippian Barnett shale: lithofacies and depositional setting of a deep-water shale-gas succession in the Fort Worth Basin,Texas[J]. AAPG Bulletin,2007,91(4):579-601.
[16] 梁兴,陈科洛,张廷山,等.沉积环境对页岩孔隙的控制作用——以滇黔北地区五峰组-龙马溪组下段为例[J].天然气地球科学,2019,30(10):1393-1405.
LIANG Xing,CHEN Keluo,ZHANG Tingshan,et al.The controlling factors of depositional environment to pores of the shales:case study of Wufeng Formation-Lower Longmaxi Formation in Dianqianbei Area[J].Natural Gas Geoscience,2019,30(10):1393-1405.
[17] 王阳,陈洁,胡琳,等.沉积环境对页岩气储层的控制作用——以中扬子区下寒武统筇竹寺组为例[J].煤炭学报,2013,38(5):845-850.
WANG Yang,CHEN Jie,HU Lin,et al.Sedimentary environment control on shale gas reservoir:a case study of Lower Cambrian Qiongzhusi Formation in the Middle Lower Yangtze Area[J].Journal of China Coal Society,2013,38(5):845-850.
[18] FU X D,QIN J Z,Tengger,et al.Mineral components of source rocks and their petroleum significance:a case from Paleozoic marine source rocks in the Middle-Upper Yangtze Region[J].Petroleum Exploration and Development,2011, 38(6):671-684.
[19] 吴伟,薛子鑫,石学文,等.有机质成熟度对南方海相页岩储层孔隙的控制作用[J].能源与环保,2020,42(7):98-104,109.
WU Wei,XUE Zixin,SHI Xuewen,et al.Controlling effect of organic matter maturity on pores of marine shale reservoirs in southern China[J].China Energy and Environmental Protection,2020,42(7):98-104,109.
[20] 王濡岳,聂海宽,胡宗全,等.压力演化对页岩气储层的控制作用——以四川盆地五峰组-龙马溪组为例[J].天然气工业,2020,40(10):1-11.
WANG Ruyue,NIE Haikuan,HU Zongquan,et al.Controlling effect of pressure evolution on shale gas reservoirs:a case study of the Wufeng-Longmaxi Formation in the Sichuan Basin[J].Natural Gas Industry,2020,40(10):1-11.
[21] 邓恩德,易同生,颜智华,等.海陆过渡相页岩气聚集条件及勘探潜力研究——以黔北地区金沙参1井龙潭组为例[J].中国矿业大学学报,2020,49(6):1166-1181.
DENG Ende,YI Tongsheng,YAN Zhihua,et al.Accumulation condition and shale gas potential of the marine-terrestrial transitional facies:a case study of Jinshacan 1 Well of Longtan Formation in northern Guizhou[J].Journal of China University of Mining & Technology,2020,49(6):1166-1181.
[22] 吴忠锐,何生,何希鹏,等.湘中涟源凹陷上二叠统龙潭组和大隆组海陆过渡相泥页岩孔隙结构特征及对比[J]. 地球科学,2019,44(11):3757-3772.
WU Zhongrui,HE Sheng,HE Xipeng,et al.Pore structure characteristics and comparisons of Upper Permian Longtan and Dalong Formation transitional facies shale in Xiangzhong-Lianyuan Depression[J].Earth Science,2019,44(11):3757-3772.
[23] 刘树根,叶玥豪,冉波,等.差异保存条件下页岩孔隙结构特征演化及其意义[J].油气藏评价与开发,2020,10(5):1-11.
LIU Shugen,YE Yuehao,RAN Bo,et al.Evolution and implications of shale pore structure characteristics under different preservation conditions[J].Reservoir Evaluation and Development,2020,10(5):1-11.
[24] 姜涛,金之钧,刘光祥,等.四川盆地元坝地区自流井组页岩储层孔隙结构特征[J].石油与天然气地质,2021,42(4):909-918.
JIANG Tao,JIN Zhijun,LIU Guangxiang,et al.Pore structure characteristics of shale reservoirs in the Ziliujing Formation in Yuanba Area,Sichuan Basin[J].Oil & Gas Geology,2021,42(4):909-918.
[25] 张方,高阳,彭寿昌,等.湖相混积岩碳酸盐组分成岩作用及其孔隙结构特征——以新疆吉木萨尔凹陷二叠系芦草沟组为例[J].断块油气田,2020,27(5):567-572.
ZHANG Fang,GAO Yang,PENG Shouchang,et al.Diagenesis and pore structure characteristics of carbonate component of lacustrine mixed rocks: a case study of Permian Lucaogou Formation in Jimusar Sag,Xinjiang[J].Fault-Block Oil & Gas Field,2020,27(5):567-572.
[26] 刘诗琦,陈森然,刘波,等.基于原位溶蚀模拟实验的四川盆地二叠系栖霞组-茅口组白云岩孔隙演化[J].石油与天然气地质,2021,42(3):702-716.
LIU Shiqi,CHEN Senran,LIU Bo,et al.Pore evolution of the Permian Qixia-Maokou Formations dolomite in Sichuan Basin based on in-situ dissolution simulation experiment[J].Oil & Gas Geology,2021,42(3):702-716.
[27] 张哲豪,魏新善,弓虎军,等.鄂尔多斯盆地定边油田长7致密砂岩储层成岩作用及孔隙演化规律[J].油气地质与采收率,2020,27(2):43-52.
ZHANG Zhehao,WEI Xinshan,GONG Hujun,et al.Diagenesis characteristics and evolution of porosity of Chang7 tight sandstone reservoir in Dingbian Oilfield,Ordos Basin[J].Petroleum Geology and Recovery Efficiency,2020,27(2):43-52.
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