吉林大学学报(地球科学版) ›› 2017, Vol. 47 ›› Issue (2): 370-381.doi: 10.13278/j.cnki.jjuese.201702104

• 地质与资源 • 上一篇    下一篇

油源断裂转换带裂缝发育及其对油气控制作用——以冀中坳陷文安斜坡议论堡地区沙二段为例

张博为1, 付广1, 张居和2, 胡明1, 刘峻桥1, 王浩然1   

  1. 1. 东北石油大学地球科学学院, 黑龙江 大庆 163318;
    2. 大庆油田公司勘探开发研究院, 黑龙江 大庆 163712
  • 收稿日期:2016-05-07 出版日期:2017-03-26 发布日期:2017-03-26
  • 通讯作者: 付广(1962),男,教授,主要从事油气藏形成与保存研究,E-mail:fuguang2008@126.com E-mail:fuguang2008@126.com
  • 作者简介:张博为(1989),男,博士研究生,主要从事地质资源与地质工程研究,E-mail:857602305@qq.com
  • 基金资助:
    国家自然科学基金项目(41372153)

Fracture Development in Oil-Migrating Fault Transition Zones and Its Control on Hydrocarbon Migration and Accumulation: A Case Study of Es2 Oil Formation of Yilunpu Structure of Wen'an Slope of Jizhong Depression

Zhang Bowei1, Fu Guang1, Zhang Juhe2, Hu Ming1, Liu Junqiao1, Wang Haoran1   

  1. 1. Geoscience College, Northeast Petroleum University, Daqing 163318, Heilongjiang, China;
    2. Exploration and Development Research Institute of Daqing Oilfield Company Ltd, Daqing 163712, Heilongjiang, China
  • Received:2016-05-07 Online:2017-03-26 Published:2017-03-26
  • Supported by:
    Supported by National Natural Science Foundation of China(41372153)

摘要: 在伸展盆地中,油源断裂转换带往往对油气有着重要的控制作用,是油气的有利聚集部位。为了明确油源断裂转换带裂缝发育及其对油气运聚的控制作用,本文利用垂直累积断距-距离曲线法厘定了文安斜坡议论堡构造3条油源断裂的转换带并明确了其分布特征;依据岩心、露头资料、实钻资料和叠前三维地震资料对油源断裂转换带伴生裂缝分布进行了预测模拟;总结了油源断裂转换带对裂缝发育的控制作用,以及二者与油气成藏关系。结果表明:在本研究区油源断裂转换带部位富含砂岩的输导层较发育,应力相对油源断裂其他部位较集中,是裂缝密度高值的发育区,为油气聚集提供优势的运移通道和指向,使油气向低势区汇聚成藏。

关键词: 断裂转换带, 油源断裂, 裂缝, 油气, 议论堡构造, 文安斜坡

Abstract: Oil-migrating fault transition zones often play an important role on controlling hydrocarbon migration and accumulation, and are the preferential parts for hydrocarbon accumulation in a stretching basin. In order to clarify fracture development in oil-migrating fault transition zones and its control on hydrocarbon migration and accumulation, the evolution of vertical cumulative throw-distance curve is applied, and 3 oil-migrating fault transition zones have been recognized in Yilunpu structure of Wen'an slope. Fracture distribution in oil-migrating fault transition zones is forecasted based on the data of outcrop, drilling, logging, and pre-stack seismic. The authors summarize the control effect of fracture development in oil-migrating fault transition zones, and the relationship with hydrocarbon accumulation. The results show that, in the oil-migrating fault transition zones, sandstone and fracture is more developed, stress is more concentrated. The fracture is responsible for the path of hydrocarbon migration and accumulation.

Key words: fracture transition zones, oil-migrating fault, fractures, hydrocarbon, Yilunpu structure, Wen'an slope

中图分类号: 

  • P618.13
[1] Dahlstrom C D A.Structural Geology in the Eastern Margin of the Canadian Rocky Mountain[J].Bulletin of Canadian Petroleum Geology,1970,187:332-406.
[2] Morley C K,Nelson R A,Patton T L,et al.Transfer Zones in the East African Rift System and Their Relevance to Hydrocarbon Exploration in Rifts[J].AAPG Bulletin,1990,74:1234-1253.
[3] Faulds J E,Varga R J. The Role of Accommodation Zone and Transfer Zone in the Regional Segmentation of Extended Terranes[J].Geology Society of America Special Paper,1998,323:1-45.
[4] Bora Uzel,Hasan S Zbilir,Caglar Zkaymak,et al. Stru-ctural Evidence for Strike-Slip Deformation in the Izmir-Balikesir Transferzone and Consequences for Late Cenozoic Evolution of Western Anatolia (Turkey)[J].Journal of Geodynamics,2013,65:94-116.
[5] 陈发景.调节带(或传递带)的基本概念和分类[J].现代地质,2003,17(2):186. Chen Fajing. Basic Concepts and Classification of Regulation Band (or Pass Band)[J].Geoscience,2003,17(2):186.
[6] 陈发景,贾庆素,张洪年.传递带及其在砂体发育中的作用[J].石油与天然气地质,2004,12(4):43-50. Chen Fajing,Jia Qingsu, Zhang Hongnian.Transfer Zone and Its Relation with Distribution of Sand Bodies[J]. Oil & Gas Geology,2004,12(4):43-50.
[7] 漆家福.裂陷盆地中的构造变换带及其石油地质意义[J].海相油气地质,2007,12(4):43-50. Qi Jiafu. Structural Transfer Zones and Significance for Hydrocarbon Accumulation in Rifting Basins[J].Marine Origin Petroleum Geology, 2007,12(4):43-50.
[8] 余一欣,周心怀,汤良杰,等. 渤海海域辽东湾坳陷正断层联接及其转换带特征[J].地质论评,2009,55(1):79-84. Yu Yixin, Zhou Xinhuai, Tang Liangjie, et al. Linkages of Normal Faults and Transfer Zones in the Liaodongwan Depression, Offshore Bohai Bay Basin[J].Geological Review, 2009,55(1):79-84.
[9] 宁飞,汤良杰,朱传玲,等.挤压区局部构造转换带类型及石油地质意义[J].现代地质,2009,23(3):394-400. Ning Fei, Tang Liangjie, Zhu Chuanling, et al. Types of Structural Transfer Zone in Compressional Area and Its Significance of Petroleum Geology[J].Geoscience,2009,23(3):394-400.
[10] 李双文,吴永平,刘化清,等. 歧口凹陷新生界火成岩油藏特征及分布规律[J]. 吉林大学学报(地球科学版), 2014,44(4):1071-1084. Li Shuangwen, Wu Yongping, Liu Huaqing, et al. Characteristics and Distribution of Oil Reservoirs Related to Cenozoic Igneous Rocks in Qikou Depression[J].Journal of Jilin University(Earth Science Edition),2014,44(4):1071-1084.
[11] 蒙启安,刘一丹,吴海波,等. 海拉尔塔木察格盆地中部断陷带油气形成条件及富集规律[J]. 吉林大学学报(地球科学版), 2014,44(6):1737-1746. Meng Qi'an, Liu Yidan, Wu Haibo, et al. Formation and Accumulation Ruless of Oil and Middle Fault Depression Belt of Hailar-Tamtsag Basin[J].Journal of Jilin University(Earth Science Edition),2014,44(6):1737-1746.
[12] 程光锁,陈安玉,胡来龙,等.挤压域构造变换带内部构造类型研究:以准噶尔盆地南缘中段构造变换带为例[J].地质找矿论丛,2010,25(1):60-64. Cheng Guangsuo, Chen Anyu, Hu Lailong, et al. Structural Style Analysis in the Transition Zone of the Compressed Region:A Case Study of the Middle Transition Zone of Southern Margin of Junggar Basin[J].Contributions to Geology and Mineral Resources Research,2010,25(1):60-64.
[13] 张宇航,汤良杰,邱海峻,等.塔里木盆地巴楚隆起西段边界断层联接及变形特征[J].地球科学:中国地质大学学报,2013,38(3):573-580. Zhang Yuhang, Tang Liangjie, Qiu Haijun, et al. Linkages of the Boundary Faults and Deformation Features in the West of Bachu Uplift, Tarim Basin[J].Earth Science:Journal of China University of Geosciences, 2013,38(3):573-580.
[14] 任建业,张俊霞,阳怀忠,等. 塔里木盆地中央隆起带断裂系统分析[J].岩石学报,2011,27(1):219-230. Ren Jianye, Zhang Junxia, Yang Huaizhong, et al. Analysis of Fault Systems in the Central Uplift,Tarim Basin[J]. Acta Petrologica Sinica,2011,27(1):219-230.
[15] 管树巍,汪新,杨树锋,等.位移转换的两种概念模型与实例[J].中国科学:D辑:地球科学,2004,34(9):807-817. Guan Shuwei, Wang Xin, Yang Shufeng, et al. Two Kinds of Conceptual Models and Examples of Displacement Transformation[J].Science in China:Series D:Earth Sciences,2004,34(9):807-817.
[16] 付广,周亮,安立刚. 油源断裂输导油气能力定量评价与油气聚集:以南堡凹陷东一段为例[J]. 岩性油气藏, 2012, 24(4):8-12. Fu Guang,Zhou Liang,An Ligang. Quantitative Evaluation for Hydrocarbon Transport Ability of Faults Connected with Source Rocks and Relation with Hydrocarbon Accumulation:An Example from Ed1 of Nanpu Depression[J]. Lithologic Reservoirs, 2012, 24(4):8-12.
[17] 肖锦泉,李坤,胡贺伟,等.辽东湾坳陷辽中凹陷金县1-1油田构造特征与油气成藏[J].天然气地球科学, 2014, 25(3):333-340. Xiao Jinquan,Li Kun,Hu Hewei,et al. Tectonic Feature and Hydrocarbon Accumulation of Jinxian1-1 Oil Field at Liaozhong Sag in Liaodong Depression[J]. Natural Gas Geoscience, 2014, 25(3):333-340.
[18] 周心怀, 余一欣, 魏刚, 等.渤海辽东湾海域JZ25-1S转换带与油气成藏的关系[J]. 石油学报, 2008, 29(6):837-840. Zhou Xinhuai,Yu Yixin,Wei Gang,et al. Relationship Between JZ25-1S Transfer Zone and Hydrocarbon Accumulation in Liaodongwan Offshore of Bohai Bay Basin[J].Acta Petrolei Sinica, 2008, 29(6):837-840.
[19] 孙向阳, 任建业.东营凹陷北带转换带构造与储集体分布[J].石油勘探与开发, 2004, 31(1):21-23. Sun Xiangyang,Ren Jianye. Transfer Zone and Its Relative Reservoir Distribution in Northern Zone of Dongying Sag[J]. Petroleum Exploration and Development, 2004, 31(1):21-23.
[20] 张志攀, 卢异, 付立新, 等.歧口凹陷古近纪坡折带特征及控沉作用[J].天然气地球科学, 2012, 23(2):284-290. Zhang Zhipan,Lu Yi,Fu Lixin,et al. Characteristics of Paleogene Slop-Breaks in Qikou Sag & It's Controlling Effect on Sedimentation[J]. Natural Gas Geoscience, 2012, 23(2):284-290.
[21] 张升平, 吕宝凤, 夏斌, 等.东海盆地丽水-椒江凹陷构造转换带及其对油气藏形成和分布的意义[J].天然气地球科学, 2007, 18(5):653-655. Zhang Shengping,Lü Baofeng,Xia Bin,et al. The Structural Transfer Zone and Its Scientific Significance on Oil & Gas Accumulation in the Lishui-Jiaojiang Sag, East China Sea[J]. Natural Gas Geoscience, 2007, 18(5):653-655.
[22] Hooper E C D. Fluid Migration Along Growth Fault in Compacting Sediments[J]. Journal of Petroleum Geology, 1991, 14:161-180.
[23] 吕延防,韦丹宁,孙永河,等. 南堡凹陷断层对中、上部含油组合油气成藏的控制作用[J]. 吉林大学学报(地球科学版),2015,45(4):971-982. Lü Yanfang, Wei Danning, Sun Yonghe, et al. Control Action of Fault on Hydrocarbon Migration and Accumulation in the Middle and Upper Oil-Bearing Group in Nanpu Sag[J]. Journal of Jilin University(Earth Science Edition), 2015, 45(4):971-982.
[24] 王余泉,孔繁德,杜都,等. 文安斜坡议论堡构造油藏控制因素研究[J].西安工程学院学报,1999,21(2):7-12. Wang Yuquan, Kong Fande, Du Du. Reservoir Control Factor of Yilunpu Structure in Wenan Slope of Baxian Sag Jizhong Depression[J]. Journal of Xi'an Engineering University, 1999,21(2):7-12.
[25] 张岚,霍春亮,赵春明,等.渤海湾盆地锦州南油田太古界变质岩潜山储层裂缝三维地质建模[J].油气地质与采收率,2011,18(2):12-15. Zhang Lan, Huo Chunliang, Zhao Chunming, et al. Geologic Modeling of Jinzhounan Neo-Archean Metamorphic Buried Hill Fracture Reservoir[J]. Petroleum Geology and Recovery Efficiency,2011,18(2):12-15.
[26] 范存辉,秦启荣,赵玲,等.大邑地区须家河组储层裂缝特征及主控因素[J].西南石油大学学报(自然科学版),2011,33(6):55-59. Fan Cunhui, Qin Qirong, Zhao Ling, et al. On Trolling Factors and Characteristic of Reservoir Fractures in Xujiahe Formation of Dayi Area[J]. Journal of Southwest Petroleum University (Science & Technology Edition),2011,33(6):55-59.
[27] Fossen H.Structural Geology[M]. Cambridge:Cam-bridge University Press, 2010.
[28] 陈昭年,陈发景,王琦. 正断层软联接及其传递带类型[J]. 现代地质,2005,19(4):495-499. Chen Zhaonian, Chen Fajing, Wang Qi. Types of Normal Faults Soft Linkage and Corresponding Transfer Zones[J].Geoscience,2005,19(4):495-499.
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