Journal of Jilin University(Earth Science Edition) ›› 2020, Vol. 50 ›› Issue (2): 569-578.doi: 10.13278/j.cnki.jjuese.20190317

Previous Articles     Next Articles

Genetic Mechanism of High Content Tuffaceous Clastic Rock Reservoir in Hailar-Tamucage Basin

Meng Qi'an, Li Junhui, Li Yue, Zou Yue   

  1. Exploration and Development Research Institute, Daqing Oilfield Company Limited, Daqing 163712, Heilongjiang, China
  • Received:2019-12-27 Online:2020-03-26 Published:2020-03-31
  • Supported by:
    Supported by National Science and Technology Major Project(2016E-0202)

Abstract: High content of tuffaceous clastic rock reservoirs are widely developed in Tongbomiao Formation and Nantun Formation in the central oil-rich depression of Hailar-Tamucage basin,but the genetic mechanism is unclear. Based on the comprehensive analyses of core, logging, well logging and thin section data, combined with the volcanic events in Hailar-Tamucage basin and its surrounding areas, it is considered that the high tuffaceous clastic rocks developed in the middle oil-rich depression include mainly tuffaceous sandstone, tuffaceous mudstone, and tuffs. In different periods, the development characteristics of high content tuffaceous clastic rock reservoirs are different in different depressions. As a whole, the tuffaceous content in the reservoirs from Tongbomiao Formation to Nantun Formation is getting lower and lower. The high tuffaceous clastic reservoir is mainly developed in the sedimentary period of Tongbomiao Formation and the lower part of Nantun Formation. The volcanic material in the high content tuffaceous clastic rock reservoir is not derived from the basic volcanic activity in the fault depression period, but from the large-scale acidic volcanic eruption event in Daxing'anling area. There are two types of genetic mechanism of the high content tuffaceous clastic reservoir in Hailar-Tamucage basin:one is the direct air drop type of volcanic ash in the same sedimentary period, and the other is the water carrying type that the volcanic ash first dropped on the land and then deposited after being transported in the same sedimentary period. The pyroclastic material in the high tuffaceous clastic rock reservoir is easy to be dissolved by organic acid to form the secondary pores, which provided effective reservoir spaces for the deep oil and gas accumulation, and the volcanic eruption promoted the formation of high-quality source rocks, which is of great significance for oil and gas exploration.

Key words: Hailar-Tamucage basin, central oil-rich depression, Tongbomiao Formation, Nantun Formation, high tuffaceous clastic reservoir, genetic mechanism

CLC Number: 

  • P618.13
[1] 孙善平,刘永顺,钟蓉,等.火山碎屑岩分类评述及火山沉积学研究展望[J].岩石矿物学杂志, 2001, 20(3):313-317. Sun Shanping, Liu Yongshun, Zhong Rong, et al. Classification of Pyroclastic Rocks and Trend of Volcanic Sedimentology:A Review[J]. Acta Petrologic et Mineralogica, 2001, 20(3):313-317.
[2] 程日辉,沈艳杰,颜景波,等.海拉尔盆地火山碎屑岩的成岩作用[J]岩石学报,2010, 26(1):47-54. Cheng Rihui, Shen Yanjie, Yan Jingbo, et al. Diagenesis of Volcaniclast Rocks in Hailar Basin[J] Acta Petrologica Sinica, 2010, 26(1):47-54.
[3] 王留奇,赵澄林,刘孟慧.二连盆地阿南油田阿三组火山碎屑沉积成因探讨[J].石油大学学报(自然科学版), 1991, 15(4):1-7. Wang Liuqi, Zhao Chenglin, Liu Menghui. Origin of Sedimention of Volcanic Detritus in Anan Oilfield of Erlian Basin[J]. Journal of the University of Petroleum (Nature Science Edition), China, 1991, 15(4):1-7.
[4] 余家仁,郭振彬,唐阶庭.对二连盆地哈南潜山凝灰岩储层的初步认识[J].新疆石油地质, 1988, 9(3):33-38. Yu Jiaren, Guo Zhenbin, Tang Jieting. Preliminary Study on Tuff Reservoir of Hanan Buried Hill, Erlian Basin[J]. Xinjiang Petroleum Geology, 1988, 9(3):33-38.
[5] 唐阶廷.哈南油田凝灰岩油藏储层特征[J].石油勘探与开发, 1991,6(2):80-88. Tang Jieting. Characteristics of the Tuff Reservoir in Hanan Oilfield[J]. Petroleum Exploration and Development, 1991, 6(2):80-88.
[6] 梁官忠.二连盆地哈南凝灰岩油藏裂缝发育特征[J].石油实验地质, 2001, 23(4):412-417. Liang Guanzhong. Fracture Development of Tuff Reservoirs in the Hanan Area of the Erlian Basin[J].Petroleum Geology & Experiment, 2001, 23(4):412-417.
[7] 操应长,姜在兴,邱隆伟.山东惠民凹陷商74区块火成岩油藏储集空间类型及形成机理探讨[J].岩石学报, 1999, 15(1):129-136. Cao Yingchang, Jiang Zaixing, Qiu Longwei. Study on the Type and Origin of the Reservoir Space of Igneous Oil Reservoir in Shang 74 Block, Huimin Depression[J]. Acta Petrologica Sinica, 1999, 15(1):129-136.
[8] 王金友,张世奇,赵俊青,等.渤海湾盆地惠民凹陷临商地区火山岩储层特征[J].石油实验地质, 2003,25(3):264-268. Wang Jinyou, Zhang Shiqi, Zhao Junqing, et al. Characteristics of Volcanic Rock Reservoirs in the Linshang Area of the Huimin Sag[J]. Petroleum Geology & Experiment, 2003, 25(3):264-268.
[9] 杨申谷.大洼油田中生界火山岩储集层特征[J].新疆石油地质, 2004, 25(4):382-384. Yang Shengu. Characteristics of Mesozoic Volcanic Reservoir in Dawa Oilfield[J]. Xinjiang Petroleum Geology, 2004, 25(4):382-384.
[10] 曹瑞成,曲希玉,文全,等.海拉尔盆地贝尔凹陷储层物性特征及控制因素[J].吉林大学学报(地球科学版), 2009, 39(1):23-30. Cao Ruicheng, Qu Xiyu, Wen Quan, et al. Physical Properties and Control Factors of Reservoir in Beier Depression, Halaer Basin[J]. Journal of Jilin University (Earth Science Edition), 2009, 39(1):23-30.
[11] 冯立,王贤君,王选富,等.海拉尔盆地凝灰质火山岩储层矿物学及岩石力学特征研究[J].中国石油勘探, 2006(2):39-42. Feng Li, Wang Xianjun, Wang Xuanfu, et al. Mineralogy and Rock Mechanics of Tuffaceous Volcanic Reservoir in Hailar Basin[J]. China Petroleum Exploration, 2006(2):39-42.
[12] 王海燕,刘立,高玉巧,等.海拉尔盆地贝尔凹陷南屯组火山碎屑岩成岩作用讨论[J].世界地质, 2005, 24(3):219-224. Wang Haiyan, Liu Li, Gao Yuqiao, et al. Discussion of Diageneses of Volcaniclastic Rocks of Nantun Formation in Beier Sags, Hailar Basin[J]. Global Geology, 2005, 24(3):219-224.
[13] 李敬生.贝尔凹陷优质烃源岩的发现及其地质意义[J].成都理工大学学报(自然科学版), 2013, 40(3):326-332. Li Jingsheng. Discovery and Geological Significance of High-Quality Source Rock in Bei'er Sag of Hailaer Basin, China[J]. Journal of Chengdu University of Technology (Natural Science Edition), 2013, 40(3):326-332.
[14] 李军辉.海拉尔盆地呼和湖凹陷下白垩统层序构成样式及油气成藏模式[J].吉林大学学报(地球科学版), 2012, 42(4):961-969. Li Junhui. The Study on Sequence Architecture Pattern and Pool-Forming Pattern of Lower Cretaceous in Huhehu Depression[J]. Journal of Jilin University (Earth Science Edition), 2012, 42(4):961-969.
[15] 蒙启安,刘一丹,李军辉,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, Li Junhui, et al. Formation and Accumulation Rules of Oil and Gas in Middle Fault Depression Belt of Hailar Tamtsag Basin[J]. Journal of Jilin University (Earth Science Edition), 2014, 44(6):1737-1746.
[16] 李跃,蒙启安,李军辉,等.贝尔凹陷贝西地区南屯组物源特征及其对沉积体系的控制[J].沉积学报, 2018, 36(4):756-767. Li Yue, Meng Qi'an, Li Junhui, et al. The Characteristics of Paleo-Provenance System and Its Control on Sedimentary System of Nantun Group of Baer Depression[J]. Acta Sedimentologica Sinica, 2018, 36(4):756-767.
[17] 蒙启安, 李跃, 李军辉,等.复杂断陷盆地源-汇时空耦合控砂机制分析:以海拉尔盆地贝尔凹陷为例[J].中国矿业大学学报, 2019, 48(2):412-420. Meng Qi'an, Li Yue, Li Junhui, et al. Analysis of Source and Convergence Coupling Control Sand Mechanism in Complicated Faulted Basin:An Example of Beier Depression in Hailar Basin[J]. Journal of China University of Mining & Technology, 2019, 48(2):412-420.
[18] 李跃,李军辉,王子赫,等.陆相断陷湖盆基准面旋回对沉积砂体的控制:以海拉尔盆地贝尔凹陷贝西地区为例[J].沉积学报, 2019, 37(4):858-867. Li Yue, Li Junhui, Wang Zihe, et al. Effect of Base-Level Cycles on Sedimentary Sandbodies in Continental Faulted Basins:Case Study of Beixi Area, Beier Depression, Hailar Basin[J]. Acta Sedimentologica Sinica, 2019, 37(4):858-867.
[19] 唐宗源.大兴安岭中段中生代火山岩成因及地球动力学机制[D].长春:吉林大学, 2019. Tang Zongyuan. Genesis and Geodynamic Mechanism of Mesozoic Volcanic Rocks in the Middle Part of Daxing'anling[D]. Changchun:Jilin University, 2019.
[20] 李双庆. 中国东北地区晩中生代典型盆地火山作用及沉积物源演化特征[D].合肥:中国科学技术大学, 2015. Li Shuangqing. Characteristics of Volcanism and Sediment Source Evolution of Typical Mesozoic Basins in Northeast China[D]. Hefei:University of Science and Technology of China, 2015.
[21] 张吉衡. 大兴安岭中生代火山岩年代学及地球化学研究[D]. 北京:中国地质大学(北京), 2009. Zhang Jiheng. Chronology and Geochemistry of Mesozoic Volcanic Rocks in Daxing'anling[D]. Beijing:China University of Geosciences(Beijing), 2009.
[22] 章凤奇. 松辽盆地北部早白垩世火山事件与地球动力学[D].杭州:浙江大学, 2007. Zhang Fengqi. Early Cretaceous Volcanic Events and Geodynamics in the Northern Songliao Basin[D]. Hangzhou:Zhejiang University, 2007.
[1] Zhang Bingxian. Deformation Mechanism and Stability Analysis of Bank Slope in Downstream of Yuqu River in Tibet [J]. Journal of Jilin University(Earth Science Edition), 2018, 48(5): 1539-1545.
[2] Li Xiaolin, Wu Guolu, Lei Yude, Li Chongyang, Zhao Jichang, Bai Yinguo, Zeng Zhaofa, Zhao Zhen, Zhang Shanshan, Zhao Aijun. Suggestions for Geothermal Genetic Mechanism and Exploitation of Zhacang Temple Geothermal Energy in Guide County, Qinghai Province [J]. Journal of Jilin University(Earth Science Edition), 2016, 46(1): 220-229.
[3] Zhang Zhihui, Zhang Da, Di Yongjun, Li Xingjian, Que Chaoyang, Ma Xianping, Du Zezhong. Characteristics of Fluid Inclusions and Primary Metallogenic Mechanism of Jiaochong Au-S Deposit in Tongling Area, Anhui [J]. Journal of Jilin University(Earth Science Edition), 2015, 45(6): 1657-1666.
[4] Yan Lei, Liu Zhaojun, Fang Shi, Zhang Ge, Zhang Junlong, Hu Fei. Sandstone Distribution Characteristics and Dispersal Mechanism of the Lower Cretaceous Nantun Formation,Tanan Depression [J]. Journal of Jilin University(Earth Science Edition), 2015, 45(2): 507-517.
[5] Zhao Xiaoqing, Cheng Rihui, Yu Zhenfeng, Sun Fengxian, Wang Peng, Gao Huijun. Provenance-Sedimentary System and Tectonic Setting of First Member of Nantun Formation in Wuerxun Depression of Hailar Basin [J]. Journal of Jilin University(Earth Science Edition), 2015, 45(1): 61-80.
[6] Xi Kelai, Cao Yingchang, Zhou Lei, Zhao Xianzheng, Jin Fengming, Yang Chunyu, Su Rui, Dong Xiongying. Genetic Mechanism of Effective Reservoirs in the Upper Part of the Fourth Member of the Shahejie Formation in Hexiwu Structural Zone of Langgu Depression [J]. Journal of Jilin University(Earth Science Edition), 2014, 44(5): 1451-1465.
[7] Liu Zhaojun, Hu Fei, Sun Pingchang, Meng Qingtao, Liu Rong. Re-Discussion on the Four Division Scheme About Continental Sequence Stratigraphy and Its Application on Oil and Gas Exploration [J]. Journal of Jilin University(Earth Science Edition), 2013, 43(1): 1-12.
[8] YANG Ting, JIN Zhen-kui, ZHANG Lei, ZHAO Kun, BAI Xue-feng, WANG Jing-xian. Sequence Stratigraphic Characteristic of the Nantun Formation in the Western Area of Beier Depression|Hailaer Basin [J]. J4, 2011, 41(3): 629-638.
[9] DENG Hu-cheng, ZHOU Wen, JIANG Wen-li, LIU Yan, LIANG Feng. Genetic Mechanism and Development Periods of Fracture in Yanchang and Yan’an Formation of Western Mahuangshan Block in Ordos Basin [J]. J4, 2009, 39(5): 811-817.
[10] ZHANG Xin-tao,LIU Li,WEI Wen-yan. Diagenesis and Its Influence to Porosity Evolution of Tongbomiao Formation in Beier Sag, Hailaer Basin [J]. J4, 2008, 38(1): 34-0042.
[11] WANG Shu-xue, GENG Chang-xi. Insitu Recognition and Evaluation of Mud Log for Light Oil Bed,A Successful Case in Beier Depression of Hailaer Basin [J]. J4, 2007, 37(6): 1279-1284.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!