2020 Vol. 53, No. 2
Article Contents

ZHANG Zhisheng, WANG Xiaojun, FENG Liyong, LI Yongfeng, FU Guomin, WANG Kang. 2020. Genetic Analysis and Identification of Yanchang 8 High-resistivity Water Layer in Huaqing Area, Ordos Basin. Northwestern Geology, 53(2): 244-252. doi: 10.19751/j.cnki.61-1149/p.2020.02.016
Citation: ZHANG Zhisheng, WANG Xiaojun, FENG Liyong, LI Yongfeng, FU Guomin, WANG Kang. 2020. Genetic Analysis and Identification of Yanchang 8 High-resistivity Water Layer in Huaqing Area, Ordos Basin. Northwestern Geology, 53(2): 244-252. doi: 10.19751/j.cnki.61-1149/p.2020.02.016

Genetic Analysis and Identification of Yanchang 8 High-resistivity Water Layer in Huaqing Area, Ordos Basin

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  • The high-resistance water layer is generally developed in Chang 8 reservoir, Huaqing area of Ordos Basin. There is little electrical difference between the water layer and the oil layer in the same reservoir sand body. The oil saturation calculated in water layer is obviously higher, and the traditional well-logging interpretation has a low agreement with fracturing test. Combined with logging interpretation, formation testing, production testing and laboratory data analysis, the formation and control factors of high resistivity layer were analyzed, and the fluid identification standard was established by using the resistivity morphological difference method. The results show that the Chang 8 reservoir of Huaqing area is oleophylic, chlorite membrane developed and asphaltene is generally filled with pores. Chlorite membrane-organic matter complex is formed under the action of self-priming and particle surface adsorption and results in high resistivity logging response, while the non-wetted water phase occupied the relatively unobstructed larger pore throat and easy to flow. In the low enrichment of oil and gas, water produced. By means of resistivity-curve-shape method, the chart "convex" and "concave" logging identification chart and fluid identification standard are established respectively. Convex reservoir is Δt ≥ 216μs/m,Rt ≥ 36Ω.m and the concave reservoir is Δt ≥ 221 μs/m, Rt ≥ 60 Ω.m. As a whole, the coincidence rate between logging interpretation and oil test production increases more than 15%, compared with the conventional plate intersection method. It has a remarkable effect on the identification of high resistivity water layer.
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  • 陈世加, 路俊刚, 姚泾利, 等. 鄂尔多斯盆地华庆地区长8油层组成藏特征及控制因素[J]. 沉积学报, 2012, 30(6):1130-1139.

    Google Scholar

    CHEN Shijia, LU Jungang, YAO Jingli, et al. Characteristics of Reservoir Formation and the Controlling Factors of Chang 8 Oil-bearing Formation[J]. Acta Sedimentologica Sinica, 2012, 30(6):1130-1139.

    Google Scholar

    苏妮娜.鄂尔多斯盆地合水地区长8特低渗透储层特征及其成因研究[D]. 西安:西北大学, 2007.

    Google Scholar

    SU Nina. Research on the Charateristics and Genesis of Ultra-low Permeability Sandstone Reseroir of Chang 8 in Heshui Area of Ordos Basin[D]. Xi'an:Northwestern University, 2007.

    Google Scholar

    张创, 孙卫, 高辉, 等.鄂尔多斯盆地华池长8储层成岩相与孔隙度演化[J]. 地球科学(中国地质大学学报),2014,39(04):411-420.

    Google Scholar

    ZHANG Chuang, SUN Wei, GAO Hui, et al. Characteristics of Reservoir Formation and the Controlling Factors of Chang 8 Oil-bearing Formation[J]. Earth Science(Journal of China University of Geosciences, 2014,39(04):411-420.

    Google Scholar

    王维斌, 朱静, 马文忠, 等.鄂尔多斯盆地周家湾地区长8致密砂岩储层特征及影响因素[J]. 岩性油气藏,2017,29(01):51-58.

    Google Scholar

    WANG Weibin, ZHU Jing, MA Wenzhong, et al. Characteristics and influencing factors of Chang 8 tight sandstone reservoir of Triassic Yanchang Formation in Zhoujiawan area, Ordos Basin[J]. Lithologic Reservoirs, 2017,29(01):51-58.

    Google Scholar

    楚美娟, 李士祥, 刘显阳, 等. 鄂尔多斯盆地延长组长8油层组石油成藏机理及成藏模式[J]. 沉积学报, 2013, 31(4):683-692.

    Google Scholar

    CHU Meijuan, LI Shixiang, LIU Xianyang, et al. Accumulation Mechanisms and Modes of Yanchang Formation Chang 8 Interval Hydrocarbons in Ordos Basin[J].Acta Sedimentologica Sinica, 2013, 31(4):683-692.

    Google Scholar

    汪洋, 李树同, 牟炜卫, 等. 姬塬西部地区长81致密储层特征及孔隙度演化分析[J].岩性油气藏, 2016, 28(4):59-66.

    Google Scholar

    WANG Yang, LI Shutong, MOU Weiwei, et al.Tight reservoir characteristics and porosity evolution of Chang 81 in western Jiyuan area[J]. Lithologic Reservoirs, 2016,28(4):59-66.

    Google Scholar

    中国石油天然气集团公司勘探局. 渤海湾地区低电阻油气层测井技术与解释研究[M].北京:石油工业出版社, 2000.

    Google Scholar

    Exploration Bureau of China National Petroleum Corporation. Study on logging Technology and interpretation of low Resistance Oil and Gas reservoirs in Bohai Bay area[M].Beijing:Petroleum Industry Press, 2000.

    Google Scholar

    张庆国,王硕,张晓东,等.大情字井油田高阻水层成因分析与识别方法[J].科学技术与工程, 2011, 11(34):8444-8446.

    Google Scholar

    ZHANG Qingguo,WANG Shuo, ZHANG Xiaodong, et al. On Genesis of High Resistivity Water Formation and Identification in Daqingzi Oilfield[J]. Science Technology and Engineering, 2011, 11(34):8444-8446.

    Google Scholar

    宋健,孟旺才,邓南涛,等.鄂尔多斯盆地富黄地区延长组储层特征及物性影响因素分析[J].西北地质,2019,52(14):98-107.

    Google Scholar

    SONG Jian,MENG Wangcai,DENG Nantao, et al. Features and Influencing Factors of Yangchang Formation Reservoir in Fuxian-Huangling Exploration Area,Erdos Basin[J].Northwestern Geology,2019,52(14):98-107.

    Google Scholar

    孙宁亮,钟建华,倪良田,等. 鄂尔多斯盆地南部上三叠统延长组物源分析及热演化[J]. 中国地质,2019,46(3):537-556.

    Google Scholar

    SUN Ningliang,ZHONG Jianhua,NI Liangtian, et al. Provenance analysis and thermal evolution of Upper Triassic Yanchang Formation in the Southern Ordos Basin[J]. Geology in China, 2019, 46(3):537-556(in Chinese with English abstract).

    Google Scholar

    邱启红, 夏朝辉, 张铭, 等. 印尼XX区块高阻水层成因分析[J]. 海洋石油, 2012, 32(4):75-78.

    Google Scholar

    QIU Qihong, XIA Chaohui, ZHANG Ming, et al. Genetic Analysis of High resistivity Water layer in XX Block, Indonesia[J]. Offshore Oil, 2012, 32(4):75-78.

    Google Scholar

    程妮, 李和, 张锦峰, 等. 靖边青阳岔油区低阻油层形成因素分析[J]. 特种油气藏, 2010,17(6):60-61.

    Google Scholar

    CHENG Ni, LI He, ZHANG Jinfeng, et al. Analysis of forming factors of the low resistivity reservoir in the Qingyangcha oilfield in Jingbian[J]. Special Oil Gas Reservoirs, 2010,17(6):60-61.

    Google Scholar

    郭顺, 王震亮, 张小莉, 等. 陕北志丹油田樊川区长61低阻油层成因分析与识别方法[J]. 吉林大学学报(地球科学版), 2012, 42(1):18-24.

    Google Scholar

    GUOShun, WANG Zhengliang, ZHANG Xiaoli, et al. Origin Analysis on Chang 61 Reservoir with Low Resistivity and Its Identificating Methods from Fanch Area, Zhidan Oil Field, in Northern Shanxi, Ordos Basin[J]. Journal of Jilin University(Information Science Edition), 2012, 42(1):18-24.

    Google Scholar

    周荣安, 焦创赟, 李志伟, 等. 鄂尔多斯盆地高电阻率水层的成因分析[J]. 测井技术, 2005, 29(4):333-336.

    Google Scholar

    ZHOU Rongan, JIAO Chuangyun, LI Zhiwei, et al. On Genesis of High Resistivity Water Formation in Erdos Basin[J]. Well Logging Technology, 2005, 29(4):333-336.

    Google Scholar

    吴应忠, 段毅, 赵阳, 等. 陇东地区长81低阻油层与高阻水层识别标准研究[J]. 特种油气藏, 2017, 24(1):38-42.

    Google Scholar

    WU Yingzhong, DUAN Yi, ZHAO Yang, et al. Standards for discernment of low-resistivity oil zones and high-resistivity water zones in L81 Formation of the longdong Area[J]. Special Oil Gas Reservoirs, 2017, 24(1):38-42.

    Google Scholar

    刘建, 韩婧婧, 王博. 西峰油田长8油藏高阻水层影响因素探讨[J]. 石油化工应用, 2016, 35(1):111-118.

    Google Scholar

    LIU Jian, HAN Jingjing, WANG Bo. Investigation on factors of high resistivity water in Xifeng oilfield Chang 8 reservoir[J]. 2016, 35(1):111-118.

    Google Scholar

    陈世加, 姚泾利, 路俊刚, 等. 储层沥青成因及其对油气运聚的影响-以鄂尔多斯盆地华庆地区长8油层组1砂组为例[J]. 石油与天然气地质, 2012, 33(1):37-44.

    Google Scholar

    CHEN Shijia, YAO Jingli, LU Jungang, et al. Reservoir bitumen genesis and its impacts on hydrocarbon migration and accumulation:a case study from Chang 81 of Yangchang Fomation in Huaqing area, the Ordos Basin[J].Oil & Gas Geology, 2012, 33(1):37-44.

    Google Scholar

    钟大康, 周立建, 孙海涛, 等. 鄂尔多斯盆地陇东地区延长组砂岩储层岩石学特征[J].地学前缘, 2013, 20(2):52-60.

    Google Scholar

    ZHONG dakang, ZHOU Lijian, SUN Haitao, et al. Petrology of sandstone reservoirs in Longdong Area, Ordos Basin[J]. Geoscience Frontiers, 2013, 20(2):52-60.

    Google Scholar

    朱鹏辉. 陇东地区长8油层组储层特征及成岩作用研究[J]. 石油地质与工程, 2015, 29(6):53-56.

    Google Scholar

    ZHU Penghui. Study on reservoir characteristics and diagenesis of Chang-8 formation in Longdong area[J]. Petroleum Geology and Engineering, 2015, 29(6):53-56.

    Google Scholar

    蔡玥.姬塬油田刘峁塬区长8低渗透油藏储层特征及优质储层主控因素研究[D].西安:长安大学, 2013.

    Google Scholar

    CAI Yue.Study on reservoir characteristics and main control factors of high quality reservoir in Chang 8 low permeability reservoir in Liumao Yuan area of Jiyuan Oilfield[D]. Xi'an:Chang'an University, 2013.

    Google Scholar

    张驰, 王峰, 田景春, 等. 鄂尔多斯盆地马岭地区延长组长8段储层特征及综合评价[J].石油地质与工程, 2015, 29(1):45-48.

    Google Scholar

    ZHANG Chi, WANG Feng, Tian Jingchun, et al. Reservoir characteristics and comprehensive evaluation of Chang-8 member,Yanchang formation of Maling area in Ordos basin[J].Petroleum Geology and Engineering, 2015, 29(1):45-48.

    Google Scholar

    钟鸣, 田景春, 雷启宏, 等. 鄂尔多斯盆地贺旗-环北地区延长组长8段储层特征及控制因素[J].石油地质与工程, 2014, 28(2):27-30.

    Google Scholar

    ZHONG Ming, TIAN Jingchun, LEI Qihong, et al. Reservoir characteristics and controlling factors of Chang-8 member in Yanchang formation of Heqi-huanbei area in Ordos basin[J]. 2014, 28(2):27-30.

    Google Scholar

    孙宁亮,钟建华,倪良田,等.鄂尔多斯盆地南部上三叠统延长组物源分析及热演化[J].中国地质,2019,46(3):537-556.

    Google Scholar

    SUN Ningliang, ZHONG Jianhua, NI Liangtian, et al. Provenance analysis and thermal evolution of Upper Triassic Yanchang Formation in the Southern Ordos Basin[J]. Geology in China, 2019, 46(3):537-556(in Chinese with English abstract).

    Google Scholar

    WORTHINGTON Paul F, JOHNSON Paul W. Quantita-tive evaluation of hydrocarbon saturation in shaly freshwa-ter reservoirs[J]. The Log Analyst, 1991, 32(4):358-370.

    Google Scholar

    ZEMANEK Joe. Low-resistivity hydrocarbon-bearingsand reservoirs[J]. Spe Formation Evaluation, 1989, 4(4):515-521.

    Google Scholar

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