2021 Vol. 54, No. 4
Article Contents

YI Jingjing, CHEN Kefei. 2021. Sedimentary Characteristics and Development Model of Shallow-water Delta of Salt Lake in Qianjiang Depression. Northwestern Geology, 54(4): 199-210. doi: 10.19751/j.cnki.61-1149/p.2021.04.016
Citation: YI Jingjing, CHEN Kefei. 2021. Sedimentary Characteristics and Development Model of Shallow-water Delta of Salt Lake in Qianjiang Depression. Northwestern Geology, 54(4): 199-210. doi: 10.19751/j.cnki.61-1149/p.2021.04.016

Sedimentary Characteristics and Development Model of Shallow-water Delta of Salt Lake in Qianjiang Depression

  • The Qianjiang depression of Jianghan basin develops a sedimentary system in shallow-water delta. Its formation, evolution and development model have some similarities and also differences with the freshwater environment because of high salinity of the lake basin. Based on 3D seismic, well logging, core and geochemical data, this paper clarified the depositional characteristics and development model of shallow water deltas in this area. The lacustrine mudstone of Qianjiang Formation in Qianjiang depression is lighter in color; light red mudstone can be seen in some wells, and mud cracks are common in mudstone with high Mn/Fe ratio and Sr/Ba ratio, being shallow sedimentary environment of salt lake. Detrital materials are transported over long distances by means of the strong sand-carrying capacity of the salt lake water body. The relatively high-density sand-carrying water masses sink to form underwater distributary channel sand bodies or turbidite sand bodies. The relatively low-density sand-carrying water masses are suspended or floating under the support of the salt water in the lake basin and are further transported towards the lake basin, forming beach bar sand or sheet sand bodies on the far shore. The study area is mainly shallow-water delta front subfacies, including various types of microfacies such as the end of underwater distributary channel, mouth bars, sheet sandsand distal bars. Thus, a shallow delta sedimentary model on the far shore of the salt lake was established during the deposition of the Qianjiang Formation. This model clarifies the distribution characteristics and development mechanism of the sand bodies, and provides a theoretical basis for rolling exploration and later development in the study area.
  • 加载中
  • 张昌民, 尹太举, 朱永进, 等.浅水三角洲沉积模式[J]. 沉积学报, 2010, 28(5):933-944.

    Google Scholar

    ZHANG Changming, YIN Taiju, ZHU Yongjin, et al. Shallow-water deltas and models[J]. Acta Sedimentologica Sinica, 2010, 28(5):933-944.

    Google Scholar

    赵翰卿.松辽盆地大型叶状三角洲沉积模式[J]. 大庆石油地质与开发, 1987, 6(4):1-9.

    Google Scholar

    ZHAO Hanqing.Sedimentary model of largescale leaf-shaped delta in SongliaoBasin[J]. Petroleum Geology & Oilfield Development in Daqing, 1987, 6 (4):1-9.

    Google Scholar

    姚光庆, 马正, 赵严超, 等.浅水三角洲分流河道砂体储层类型[J]. 石油学报, 1995, 16(1):24-31.

    Google Scholar

    YAO Guangqing, MA Zheng, ZHAO Yanchao, et al. Reservoir characteristics of distributary channel sand bodies of shallow water delta[J]. Acta Petrolei Sinica, 1995, 16(1):24-31.

    Google Scholar

    楼章华, 卢庆梅, 蔡希源, 等.湖平面升降对浅水三角洲前缘砂体形态的影响[J]. 沉积学报, 1998, 16(4):27-31.

    Google Scholar

    LOU Zhanghua, LU Qingmei, CAI Xiyuan, et al. Influence of lake level fluctuation on sandbody shapes at shallow-water delta front[J]. Acta Sedimentologica Sinica, 1998, 16(4):27-31.

    Google Scholar

    吕晓光, 李长山, 蔡希源, 等.松辽大型浅水湖盆三角洲沉积特征及前缘相储层结构模型[J]. 沉积学报, 1999, 17 (4):572-577.

    Google Scholar

    LÜ Xiaoguang, LI Changshan, CAI Xiyuan, et al. Depositional characteristicsand front facies reservoir framework model in SongLiao shallow lacustrine delta[J]. Acta Sedimentologica Sinica, 1999, 17 (4):572-577.

    Google Scholar

    韩晓东, 楼章华, 姚炎明, 等.松辽盆地湖泊浅水三角洲沉积动力学研究[J]. 矿物学报, 2000, 20(3):305-313.

    Google Scholar

    HAN Xiaodong, LOU Zhanghua, YAO Yanming, et al. Analysis of the sedimentary dynamic process of the shallow-water lake delta in the Songliao basin, northeastern China[J]. Acta Mineralgica Sinica, 2000, 20(3):305-313.

    Google Scholar

    王家豪, 陈红汉, 江涛, 等.松辽盆地新立地区浅水三角洲水下分流河道砂体结构解剖[J]. 地球科学, 2012, 37(3):556-564.

    Google Scholar

    WANG Jiahao, CHEN Honghan, JIANG Tao, et al. Sandbodies frameworks of subaqueous distributary channel in shallow-water delta, Xinli Area of Songliao Basin[J]. Earth Science, 2012, 37(3):556-564.

    Google Scholar

    朱筱敏, 刘媛, 方庆, 等.大型坳陷湖盆浅水三角洲形成条件和沉积模式:以松辽盆地三肇凹陷扶余油层为例[J]. 地学前缘, 2012, 19(1):89-99.

    Google Scholar

    ZHU Xiaoming, LIU Yuan, FANG Qing, et al. Formation and sedimentary model of shallow delta in large-scale lake:example from Cretaceous Quantou Formation in Sanzhao Sag, SongliaoBasin[J]. Earth Science Frontiers, 2012, 19(1):89-99.

    Google Scholar

    邹才能, 赵文智, 张兴阳, 等.大型敞流坳陷湖盆浅水三角洲与湖盆中心砂体的形成与分布[J]. 地质学报, 2008, 82(6):813-825.

    Google Scholar

    ZOU Caineng, ZHAO Wenzhi, ZHANG Xingyang, et al. Formation anddistribution of shallow-water deltas and central-basin sandbodies inlarge open depression lake basins[J]. Acta Geologica Sinica, 2008, 82(6):813-825.

    Google Scholar

    韩永林, 王成玉, 王海红, 等.姬塬地区长8油层组浅水三角洲沉积特征[J]. 沉积学报, 2009, 27(6):1057-1064.

    Google Scholar

    HAN Yonglin, WANG Chengyu, WANG Haihong, et al. Sedimentary Characteristics of Shallow-water Deltas in Chang-8Subsection of Yanchang Formation, Jiyuan area[J]. Acta Sedimentologica Sinica, 2009, 27(6):1057-1064.

    Google Scholar

    席胜利, 李文厚, 刘新社, 等.鄂尔多斯盆地神木地区下二叠统太原组浅水三角洲沉积特征[J]. 古地理学报, 2009, 11(2):187-194.

    Google Scholar

    XI Shengli, LI Wenhou, LIU Xinshe, et al. Sedimentary characteristics of shallow water delta of the Lower PermianTaiyuan Formation in Shenmu area, Ordos Basin[J]. Journal of Palaeogeography, 2009, 11(2):187-194.

    Google Scholar

    刘柳红, 朱如凯, 罗平, 等.川中地区须五段-须六段浅水三角洲沉积特征与模式[J]. 现代地质, 2009, 23(4):667-675.

    Google Scholar

    LIU Liuhong, ZHU Rukai, LUO Ping, et al. Characteristics and depositional models for the Shallow-water deltasof the 5th-6th interval, Xujiahe Formation, Upper TriassicinCentral Sichuan Basin, China[J]. Geoscience, 2009, 23(4):667-675.

    Google Scholar

    朱伟林, 李建平, 周心怀, 等.渤海新近系浅水三角洲沉积体系与大型油气田勘探[J]. 沉积学报, 2008, 26(4):575-582.

    Google Scholar

    ZHU Weiling, LI Jianping, ZHOU Xinhuai, et al. Neogene ShallowWater Deltaic System and Large HydrocarbonAccumulations in Bohai Bay, China[J]. Acta Sedimentologica Sinica, 2008, 26(4):575-582.

    Google Scholar

    周心怀, 赖维成, 杜晓峰, 等.渤海海域隐蔽油气藏勘探关键技术及其应用成效[J]. 中国海上油气, 2012, 24(增刊1):11-18.

    Google Scholar

    ZHOU Xinghuai, LAI Weicheng, DU Xiaofeng, et al. Some key exploration techniques for the subtlereservoirs and their application in Bohai water[J]. China Offshore Oil and Gas, 2012, 24(S1):11-18.

    Google Scholar

    王德英, 余宏忠, 于海波, 等.渤海海域新近系层序地层格架约束下岩性圈闭发育特征分析及精细刻画[J]. 中国海上油气, 2012, 24(增刊1):23-27.

    Google Scholar

    WANG Deying, YU Hongzhong, YU Haibo, et al. An analysis and refined depiction of lithologic trapdevelopment under the framework of Neogenesequence stratigraphy in Bohai water:a case of Lower Member of Minghuazhen Formation in Shijiutuo rise[J]. China Offshore Oil and Gas, 2012, 24(S1):23-27.

    Google Scholar

    揣媛媛, 王德英, 于海波, 等.石臼坨凸起新近系岩性圈闭识别与刻画关键技术[J]. 地球物理学进展, 2013, 28(1):365-372.

    Google Scholar

    CHUAI Yuanyuan, WANG Deying, YU Haibo, et al. Research on the Key technology of identification and description for lithologic traps in Neogene, Shijiutuo Uplift in Bohai[J]. Progress in Geophys, 2013, 28(1):365-372.

    Google Scholar

    陈玉明, 童思友, 陈凤玲.潜江凹陷潜江组隐蔽性油藏分布规律与预测方法[J]. 西北地质, 2004, 37(4):59-64.

    Google Scholar

    CHEN Yuming, TONG Siyou, CHEN Fengling. Distribution and prediction of concealed reservoirs of Qianjiang Group in Qianjiang Depression[J]. Northwestern Geology, 2004, 37(4):59-64.

    Google Scholar

    楼章华, 兰翔, 卢庆梅, 等.地形、气候与湖面波动对浅水三角洲沉积环境的控制作用[J]. 地质学报, 1999, 73(1):83-92.

    Google Scholar

    LOU Zhanghua, LAN Xiang, LU Qingmei, et al. Controls of the topography, climate and lake level fluctuation on the depositional environment of a shallowwater delta[J]. Acta Geologica Sinica, 1999, 73 (1):83-92.

    Google Scholar

    Fisk H N.Sedimentary framework of the Modern Mississippi Delta[J]. Journal of Sedimentary Petrology, 1954, 24(2):76-99.

    Google Scholar

    Donaldson A C.Pennsylvanian sedimentation of centralAppalachians[J]. Special Paper of Geology Society of America, 1974, 148:47-48.

    Google Scholar

    Coleman J M, Prior D B.Deltaic environments ofdeposition//Scholle P A, Sprarlng D.Sandstone Depositional Environments.AAPGMemoir[J].Tulsa, Okla:American Association of Petroleum Geologists, 1982, 31:139-178.

    Google Scholar

    Postma G.An analysis of the variation in delta architecture[J]. Terra Nova, 1990, 2(2):124-130.

    Google Scholar

    Reading H G.Sedimentary Environments:Processes, Facies andStratigraphy[M]. Third Edition, XordUK:Blackwell Science, 1996.

    Google Scholar

    Kroonenberg S B, Rusakov G V, Svitoch A A.The wandering of theVolga delta:a response to rapid Caspian Sea level change[J]. Sedimentary Geology, 1997, 107:189-209.

    Google Scholar

    Overeem I, Kroonenberg S B, Veldkamp A, et al. Small-scale stratigraphyin a large ramp delta:recent and Holocene sedimentation in theVolga Delta, Caspian Sea[J]. Sedimentary Geology, 2003, 159:133-157.

    Google Scholar

    Fielding C R, Trueman J D, Alexander J. Holocenedepositional history of the Burdekin river delta of northeasternAustralia:a model for a low-accommodation, highstand delta[J]. Journal of Sedimentary Research, 2006, 76:411-428.

    Google Scholar

    Huang X, Liu K, Zou C, et al. Forward stratigraphic modelling of the shallow-water delta system in the PoyangLake, southern China[J]. Journal of Geochemical Exploration, 2014, http://dx.doi.org/10.1016/j.gexplo.2014.01.019.

    Google Scholar

    Lemons D R, Chan M A.Facies architecture and sequence stratigraphyof fine-grained lacustrine deltas along the eastern margin of late PleistoceneLake Bonneville, northern Utah and southern Idaho[J]. AAPG Bulletin, 1999, 83:635-665.

    Google Scholar

    Plint A G.Sequence stratigraphy and paleogeography of Cenomaniandeltaic complex:the Dunvegan and lower Kaskapau Formations in subsurfaceand outcrop, Alberta and British Columbia, Canada[J]. Bulletin of Canadian Petroleum Geology, 2000, 48(1):43-79.

    Google Scholar

    Hoy R G, Ridgway K D.Sedimentology and sequence stratigraphy offan-delta and river-delta deposystems, Pennsylvanian Minturn Formation, Colorado[J]. AAPG Bulletin, 2003, 87:1169-1191.

    Google Scholar

    Olariu C, Bhattacharya P J.Terminal distributary channels and delta front architecture of river-dominated delta systems[J]. Journal of Sedimentary Research, 2006, 76:212-233.

    Google Scholar

    Porebski S J, Steel R J.Deltas and sea-level change[J]. Journal of Sedimentary Research, 2006, 76:390-403.

    Google Scholar

    Ganil M R, Bhattacharya J P.Basic building blocks and process variabilityof a Cretaceous delta:internal facies architecture reveals a moredynamic interaction of river, wave, and tidal processes than is indicatedby external shape[J]. Journal of Sedimentary Research, 2007, 77(4):284-302.

    Google Scholar

    Keumsuk L, McMechan G A, Gani M Ro, et al. 3-D architecture andsequence stratigraphic evolution of a forced regressive top-truncatedmixed-influenced delta, Cretaceous Wall Creek sandstone, Wyoming, U.S.A[J]. Journal of Sedimentary Research, 2007, 77(4):284-302.

    Google Scholar

    García-García F, Corbi H, Soria J M, et al. Architecture analysis of a river flood-dominated deltaduring an overall sea-level rise (early Pliocene, SESpain)[J]. Sedimentary Geology, 2011, 237:102-113.

    Google Scholar

    Shang Xu, Fang Hao, Changgui Xu, et al. Seismic geomorphology and sedimentology of fluvial-dominated delta:Implications for the Neogene reservoirs, Offshore Bohai Bay Basin, China[J]. AAPG Bulletin, 2019, 103:2399-2420.

    Google Scholar

  • 加载中
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Article Metrics

Article views(1148) PDF downloads(50) Cited by(0)

Access History

Other Articles By Authors

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint