Geologic Exploration

Evolutionary Law and Geological Significance of Migration and Superposition of Underwater Distributary Channels in the Bashijiqike Formation, Yaha Area, Tarim Basin

  • Yang Huatong ,
  • Lin Xiaobing ,
  • Zhang Xuan ,
  • Wang Zhuangsheng ,
  • Fan Junming ,
  • Wang Guihua ,
  • Liu Yuansong
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  • 1. Chengdu University of Technology, Chengdu, Sichuan 610059, China;
    2. Key Laboratory of Deep-time Geography and Environment Reconstruction and Applications of Ministry of Natural Resources, Chengdu, Sichuan 610059, China

Received date: 2022-12-05

  Revised date: 2024-01-12

  Online published: 2024-07-26

Abstract

In order to clarify the migration characteristics of the underwater distributary channel at the front of the seasonal braided river delta under the arid climatic conditions in the Yaha Area Tarim Basin, the contact relationship and migration evolutionary characteristics of the underwater distributary channel were discussed on the basis of the core observation, thin-section identification, grain-size analysis, and logging curve analysis in conjunction with the sedimentary background by taking the Bashijiqike Formation as an example. The results show that the Bashijiqike Formation in the study area is a front subfacies of the braided river delta, where the microfacies such as underwater distributary channel, mouth bar and interdistributary bay are developed; the width of the underwater distributary channel ranges from 200 to 1 500 m, the sand-to-ground ratio of the sediments is high, and the channel is migrated frequently, and the migration and superposition styles are of interdistributary bay separated, spliced and cut type; the physical properties of the sand body of the underwater distributary channel are better in general, and the sand body can be formed into continuous favorable reservoirs with good pore permeability after migration and superposition. It is of great significance to clarify the migration and superposition law of the underwater distributary channel for further oil and gas exploration in the Yaha Area.

Cite this article

Yang Huatong , Lin Xiaobing , Zhang Xuan , Wang Zhuangsheng , Fan Junming , Wang Guihua , Liu Yuansong . Evolutionary Law and Geological Significance of Migration and Superposition of Underwater Distributary Channels in the Bashijiqike Formation, Yaha Area, Tarim Basin[J]. Special Oil & Gas Reservoirs, 2024 , 31(2) : 93 -102 . DOI: 10.3969/j.issn.1006-6535.2024.02.011

References

[1] 马玉杰,张荣虎,唐雁刚,等.塔里木盆地库车坳陷白垩系巴什基奇克组岩相古地理[J].新疆石油地质,2016,37(3):249-256.
MA Yujie,ZHANG Ronghu,TANG Yangang,et al.Lithofacies paleogeography of Cretaceous Bashijiqike Formation in Kuqa Depression,Tarim Basin[J].Xinjiang Petroleum Geology,2016,37(3):249-256.
[2] 费世祥,陈兴官,靳锁宝,等.鄂尔多斯盆地苏里格气田有效砂体展布规律与开发方式研究——以苏东南区为例[J].天然气勘探与开发,2018,41(4):55-61.
FEI Shixiang,CHEN Xingguan,JIN Suobao,et al.Distribution laws and development modes of effective sandbodies in Sulige gasfield:examples from southeast Sulige Block[J].Natural Gas Exploration and Development,2018,41(4):55-61.
[3] 任奕霖,赵俊峰,陈佳宇,等.鄂尔多斯盆地浅水三角洲前缘沉积特征与砂体构型:以宜川仕望河剖面长9油层组为例[J]. 新疆石油地质,2022,43(3):310-319.
REN Yilin,ZHAO Junfeng,CHEN Jiayu,et al.Sedimentary characteristics and sand body architecture of shallow delta front in Ordos Basin:a case study of Chang 9 Member in Shiwanghe Section in Yichuan[J]. Xinjiang Petroleum Geology,2022,43(3):310-319.
[4] 任双坡,姚光庆,毛文静.三角洲前缘水下分流河道薄层单砂体成因类型及其叠置模式——以古城油田泌浅10区核三段Ⅳ-Ⅵ油组为例[J].沉积学报,2016,34(3):582-593.
REN Shuangpo,YAO Guangqing,MAO Wenjing.Genetic types and superimposition patterns of subaqueous distributary channel thin sandbodies in Delta Front:a case study from the Ⅳ-Ⅵ reservoir groups of H3 in Biqian 10 Area of Gucheng Oilfield[J].Acta Sedimentologica Sinica,2016,34(3):582-593.
[5] ARON Bufe,CHRIS Paola,DOUGLAS W Burbank.Fluvial bevelling of topography controlled by lateral channel mobility and uplift rate[J].Nature Geoscience,2016,9(9):706-710.
[6] 王美霞,郭艳琴,郭彬程,等.鄂尔多斯盆地靖安油田杨66区延101油层组砂体连通性评价[J].西安石油大学学报(自然科学版),2021,36(2):1-8.
WANG Meixia,GUO Yanqin,GUO Bincheng,et al.Evaluation of sandbody connectivity of Yan101 Reservoir Group in Yang 66 Area of Jing′an Oilfield,Ordos Basin[J].Journal of Xi′an Shiyou University(Natural Science Edition),2021,36(2):1-8.
[7] WANG Yanru,LIN Changsong,ZHANG Zhongtao,et al.Sedimentary evolution and controlling factors of Early-Mid Miocene Deltaic systems in the northern Pearl River Mouth Basin,South China Sea[J].Scientific Reports,2021,11(1):6134.
[8] 刘慧盈,高志前,吴俊,等.扇三角洲前缘单一河道砂体识别与定量表征[J].大庆石油地质与开发,2017,36(1):17-21.
LIU Huiying,GAO Zhiqian,WU Jun,et al.Identification and quantitative characterization of the individual channel sandbodies in the fan delta front[J].Petroleum Geology & Oilfield Development in Daqing,2017,36(1):17-21.
[9] 魏康强.湖泊三角洲水下分流河道模拟及控制因素研究[D].北京:中国地质大学(北京),2018.
WEI Kangqiang.Study on simulation of submerged diversion channels in lake deltas and control factors[D].Beijing:China University of Geosciences,Beijing,2018.
[10] 马世忠,张永清.应用遥感信息图像研究现代水下分流河道河流类型[J].地学前缘,2012,19(2):24-31.
MA Shizhong,ZHANG Yongqing.Research on the channel pattern of present subaqueous distributary channel by remote sensing image[J].Earth Science Frontiers,2012,19(2):24-31.
[11] 常少英,刘玲利,崔钰瑶,等.浅水三角洲薄砂层地震沉积表征技术:以准噶尔盆地芳草湖地区清水河组为例[J]. 岩性油气藏,2022,34(1):139-147.
CHANG Shaoying,LIU Lingli,CUI Yuyao,et al.Seismic sedimentary characterization of thin sand layers of shallow water deltas:a case study of Qingshuihe Formation in Fangcaohu Area,Junggar Basin[J].Lithologic Reservoirs,2022,34(1):139-147.
[12] 王楠,王继伟,王芳,等.水下分流河道带砂体内部构型解剖研究及应用——以鄂尔多斯盆地吴起地区长8段为例[J].石油地质与工程,2021,35(2):23-29.
WANG Nan,WANG Jiwei,WANG Fang,et al.Research and application of internal configuration anatomy of sand body in underwater distributary channel zone-by taking Chang 8 Reservoir in the Wuqi Area of the Ordos Basin as an example[J].Petroleum Geology & Engineering,2021,35(2):23-29.
[13] 李少华,史敬华,于金彪,等.基于单一图像生成对抗神经网络方法在沉积相建模中的应用[J].油气地质与采收率,2022,29(1):37-45.
LI Shaohua,SHI Jinghua,YU JinBiao,et al.Application of SinGAN method in sedimentary facies modeling[J].Petroleum Geology & Recovery Efficiency,2022,29(1):37-45.
[14] 高志勇,周川闽,冯佳睿,等.盆地内大面积砂体分布的一种成因机理——干旱气候下季节性河流沉积[J].沉积学报,2015,33(3):427-438.
GAO Zhiyong,ZHOU Chuanmin,FENG Jiarui,et al.Distribution of a large area of sand body formation mechanism:ephemeral streams in arid climate[J].Acta Sedimentologica Sinica,2015,33(3):427-438.
[15] 刘强,汤民强,贺惠忠,等.广东阳西沙扒海域埋藏古河道沉积特征[J]. 吉林大学学报(地球科学版), 2022, 52(6):1791-1799.
LIU Qiang, TANG Minqiang, HE Huizhong, et al.Sedimentary characteristics of buried ancient channels in Shapa Area of Yangxi, Guangdong Province[J]. Journal of Jilin University (Earth Science Edition), 2022, 52(6):1791-1799.
[16] 崔海峰,郑多明,董雪华,等.塔北隆起牙哈构造带断裂特征与油气成藏[J].新疆石油地质,2009,30(1):73-76.
CUI Haifeng,ZHENG Duoming,DONG Xuehua,et al.Fault system and oil-gas accumulation in Yaha Structural Belt of Tabei Uplift[J].Xinjiang Petroleum Geology,2009,30(1):73-76.
[17] 安海亭,李海银,王建忠,等.塔北地区构造和演化特征及其对油气成藏的控制[J].大地构造与成矿学,2009,33(1):142-147.
AN Haiting,LI Haiyin,WANG Jianzhong,et al.Tectonic evolution and its controlling on oil and gas accumulation in the northern Tarim Basin[J].Geotectonics and Mineralogy,2009,33(1):142-147.
[18] 徐良佳,于胜尧,纪文涛,等.多参数约束剖析柴达木盆地砂西地区古近系沉积物源[J].断块油气田,2022,29(3):331-336.
XU Liangjia,YU Shengyao,JI Wentao,et al.Analysis on the sediment provenance of Paleogene through multi-parameter constraints in Shaxi Area, Qaidam Basin[J].Fault-Block Oil & Gas Field,2022,29(3):331-336.
[19] 刘永福,夏辉,孙琦,等.塔里木盆地塔北隆起西部巴什基奇克组层序地层及沉积演化[J].天然气地球科学,2019,30(1):62-73.
LIU Yongfu,XIA Hui,SUN Qi,et al.Sequence stratigraphy and depositional evolution of the Bashijiqike Formation in the western Tabei Uplift,Tarim Basin[J].Natural Gas Geoscience,2019,30(1):62-73.
[20] 王珂,张荣虎,唐永,等.库车坳陷北部构造带侏罗系阿合组构造成岩作用与储层预测[J].石油学报,2022,43(7):925-940.
WANG Ke,ZHANG Ronghu,TANG Yong,et al.Structural diagenesis and reservoir prediction of Lower Jurassic Ahe Formation in the northern structural belt of Kuqa Depression[J].Acta Petrolei Sinica,2022,43(7):925-940.
[21] 桂亚倩,朱光有,阮壮,等.塔里木盆地塔北隆起寒武系地层水化学特征、成因及矿物溶解-沉淀模拟[J].石油与天然气地质,2022,43(1):196-206.
GUI Yaqian,ZHU Guangyou,RUAN Zhuang,et al.Geochemical features and origin of the Cambrian Formation water in Tabei Uplift,Tarim Basin and its mineral dissolution-precipitation simulation[J].Oil & Gas Geology,2022,43(1):196-206.
[22] 李曰俊,杨海军,张光亚,等.重新划分塔里木盆地塔北隆起的次级构造单元[J].岩石学报,2012,28(8):2466-2478.
LI Yuejun,YANG Haijun,ZHANG Guangya,et al.Redivision of the tectonic units of Tabei Rise in Tarim Basin,NW China[J].Acta Petrologica Sinica,2012,28(8):2466-2478.
[23] 杨海军,吴楠,李勇,等.库车坳陷牙哈地区次生凝析气藏的成因差异[J].地质科技情报,2015,34(4):144-148.
YANG Haijun,WU Nan,LI Yong,et al.Genetic Differences of the Subsequent Condensates in Yaha Area,Kuche Depression[J].Geological Science and Technology Information,2015,34(4):144-148.
[24] 王茜,魏凡,张妍,等.鄂尔多斯盆地合水地区长81亚油层组沉积相及对储层物性的影响[J].沉积与特提斯地质,2021,41(1):88-99.
WANG Xi,WEI Fan,ZHANG Yan,et al.Sedimentary facies of sub oil-bearing formation of Chang 81 and their influence on physical properties of reservoir,Heshui,Ordos Basin,NW China[J].Sedimentary Geology and Tethyan Geology,2021,41(1):88-99.
[25] 李忠,王道轩,林伟,等.库车坳陷中—新生界碎屑组分对物源类型及其构造属性的指示[J].岩石学报,2004(3):655-666.
LI Zhong,WANG Daoxuan,LIN Wei,et al.Mesozoic-Cenozoic clastic composition in Kuqa Depression,northwest China:implication for provenance types and tectonic attributes[J].Acta Petrologica Sinica,2004(3):655-666.
[26] 杨赟昊,高志前,樊太亮,等.下寒武统黑色岩系沉积环境与控烃差异:以塔里木盆地西北缘和东北缘为例[J].断块油气田,2022,29(1):47-52.
YANG Yunhao,GAO Zhiqian,FAN Tailiang,et al.The differences of sedimentary environment and hydrocarbon control of Lower Cambrian black rock series: a case study of northwestern and northeastern margin, Tarim Basin[J].Fault-Block Oil & Gas Field,2022,29(1):47-52.
[27] 刘庆海,王博涛,阮金凤,等.环江油田L158区块长812段水下分流河道单砂体空间组合样式及其对剩余油分布的影响[J].油气地质与采收率,2022,29(2):23-33.
LIU Qinghai,WANG Botao,RUAN Jinfeng,et al.Spatial combination modes of single sandbodies in underwater distributary channels and its influence on distribution characteristics of remaining oil of Chang 812 in L158 Block,Huanjiang Oilfield[J].Petroleum Geology & Recovery Efficiency,2022,29(2):23-33.
[28] 范家伟,袁野,李绍华,等.塔里木盆地深层致密油藏地质工程一体化模拟技术[J].断块油气田,2022,29(2):194-198.
FAN Jiawei,YUAN Ye,LI Shaohua,et al.Geology-engineering integrated simulation technology of deep tight oil reservoir in Tarim Basin[J].Fault-Block Oil & Gas Field,2022,29(2):194-198.
[29] 李蕾,周继龙,王芳,等.基于剩余油分类评价的矢量调整对策研究[J].非常规油气,2021,(3):80-89.
LI Lei,ZHOU Jilong,WANG Fang,et al.Study on vector adjustment strategy based on classification and evaluation of remaining oil[J].Unconventional Oil & Gas,2021,(3):80-89.
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