硬脆性泥页岩微裂缝封堵可视化模拟试验与评价

石秉忠, 胡旭辉, 高书阳, 徐江, 林永学

石秉忠, 胡旭辉, 高书阳, 徐江, 林永学. 硬脆性泥页岩微裂缝封堵可视化模拟试验与评价[J]. 石油钻探技术, 2014, 42(3): 32-37. DOI: 10.3969/j.issn.1001-0890.2014.03.007
引用本文: 石秉忠, 胡旭辉, 高书阳, 徐江, 林永学. 硬脆性泥页岩微裂缝封堵可视化模拟试验与评价[J]. 石油钻探技术, 2014, 42(3): 32-37. DOI: 10.3969/j.issn.1001-0890.2014.03.007
Shi Bingzhong, Hu Xuhui, Gao Shuyang, Xu Jiang, Lin Yongxue. Visualization Sealing Simulation Test and Evaluation of Hard Brittle Shale Microfracture[J]. Petroleum Drilling Techniques, 2014, 42(3): 32-37. DOI: 10.3969/j.issn.1001-0890.2014.03.007
Citation: Shi Bingzhong, Hu Xuhui, Gao Shuyang, Xu Jiang, Lin Yongxue. Visualization Sealing Simulation Test and Evaluation of Hard Brittle Shale Microfracture[J]. Petroleum Drilling Techniques, 2014, 42(3): 32-37. DOI: 10.3969/j.issn.1001-0890.2014.03.007

硬脆性泥页岩微裂缝封堵可视化模拟试验与评价

基金项目: 

国家科技重大专项"海相碳酸盐岩油气井井筒关键技术"(编号:2011ZX05005-006)资助。

详细信息
    作者简介:

    石秉忠(1966- ),男,河南淮阳人,1991年毕业于长春地质学院探矿工程专业,2009年获中国石油大学(华东)石油与天然气工程专业硕士学位,2013年获中国地质大学(北京)钻井工程专业博士学位,高级工程师,主要从事深井与超深井钻井液技术研究。联系方式:(010)84988190,bz660420@163.com。

  • 中图分类号: TE28+3

Visualization Sealing Simulation Test and Evaluation of Hard Brittle Shale Microfracture

  • 摘要: 为了揭示钻井液对硬脆性泥页岩微裂缝的封堵机理,利用自行研制的可视化微裂缝封堵能力评价仪,采用单一和复合封堵材料,以相同时间内的滤失量和承压能力为标准,并结合观察缝内封堵状况,对7种缝宽的模拟微裂缝进行了封堵效果评价。数据处理分析认为,滤失量与封堵压差不是线性关系;缝宽对应于封堵材料粒径分布曲线上的D50~D58时封堵效果较好;封堵效果不随刚性封堵颗粒质量分数增加而提高;可变形溶胀微粒质量分数为0.5%~0.7%时,封堵效果最好;封堵试验表明,封堵的位置有3种,其中在缝内喉道处形成的封堵层相对较致密,承压能力相对较强。研究表明,硬脆性泥页岩微裂缝封堵模拟试验评价方法是可行的,能够对微裂缝封堵机理进行深化研究。
    Abstract: In order to understand the sealing mechanism of microfracture in hard and brittle shale,a series of tests have been conducted using the newly developed visual microfracture sealing evaluation instrument.Many kinds of LCMs had been evaluated in the test,including single and combined LCM.Filter loss and sealing pressure were used as the criterion of sealing capacity.Based on the sealing capacity criterion and visible fracture sealing condition,seven simulated fractures with different apertures were evaluated in this article.The results showed that filter loss and sealing pressure difference did not have a linear relationship. Maximum LCM performance could be achieved when fracture aperture was equal to D50-D58 of the LCMs.Better performance would not be achieved with the increment of rigid LCM concentration.The optimum mass fraction range of deformable sealing particles was 0.5%-0.7%.Three different seal locations had been observed in the fracture,and the best sealing performance was achieved when the seal formed in the middle of the fracture.The research results showed that the hard and brittle shale microfracture sealing simulation method was feasible,and it was useful to the further study of the sealing mechanism of microfracture.
  • [1] 徐同台, 崔茂荣, 王允良, 等.钻井工程井壁稳定新技术[M].北京:石油工业出版社, 1997:21-23. Xu Tongtai, Cui Maorong, Wang Yunliang, et al.New technology of borehole wall stability of drilling engineering[M].Beijing:Petroleum Industry Press, 1997:21-23.
    [2] 罗向东, 罗平亚.屏蔽式暂堵技术及储层保护中的应用研究[J].钻井液与完井液, 1992, 9(2):19-27. Luo Xiangdong, Luo Pingya.Application of temperarily sealing shielding in reservoir protection[J].Drilling Fluid Completion Fluid, 1992, 9(2):19-27.
    [3] 罗平亚.钻井完井过程中保护油层的屏蔽式暂堵技术[M].北京:中国大百科全书出版社, 1997:68-98. Luo Pingya.Shielding temporary sealing technology of protecting reservoir in the process of drilling completion[M].Beijing:Encyclopedia of China Publishing House, 1997:68-98.
    [4] 崔迎春.屏蔽暂堵剂优选的新方法[J].现代地质, 2000, 14(1):91-94. Cui Yingchun.A new method for the optimal selection of temporary sealing particles[J].Geoscience, 2000, 14(1):91-94.
    [5] 吴彬, 鄢捷年, 徐显广.保护高渗砂岩储层的钻井液技术[J].中国海上油气:地质, 2002, 16(1):58-70. Wu Bin, Yan Jienian, Xu Xianguang.A drilling fluid technique to protect high-permeability sandstone reservoir[J].China Offshore Oil and Gas:Geology, 2002, 16(1):58-70.
    [6]

    Hands Nick, Kowbel Kevin, Maikranz Sven, et al.Drill-in fluid reduces formation damage, increases production rates[J].Oil Gas Journal, 1998, 96(28):65-68.

    [7] 张金波, 鄢捷年.钻井液中暂堵剂颗粒尺寸分布优选的新理论和新方法[J].石油学报, 2004, 25(6):88-91, 95. Zhang Jinbo, Yan Jienian.New theory and method for optimizing the particle size distribution of bridging agents in drilling fluids[J].Acta Petrolei Sinica, 2004, 25(6):88-91, 95.
    [8] 张凤英, 鄢捷年, 周劲辉, 等.苏丹六区低伤害防塌钻井液技术[J].石油钻探技术, 2010, 38(2):43-46. Zhang Fengying, Yan Jienian, Zhou Jinhui, et al.An anti-sloughing and low-damage drilling fluid used in Block 6, Sudan[J].Petroleum Drilling Techniques, 2010, 38(2):43-46.
    [9] 邱正松, 张世锋, 黄维安, 等."等级孔隙最优充填"暂堵方法与现场试验[J].石油钻探技术, 2012, 40(5):17-21. Qin Zhengsong, Zhang Shifeng, Huang Weian, et al.Temporary plugging and field testing with "optimum filling for multi-stage pores" method[J].Petroleum Drilling Techniques, 2012, 40(5):17-21.
    [10] 李怀科, 鄢捷年, 叶艳, 等.保护裂缝性气藏的超低渗透钻井液体系[J].石油钻探技术, 2008, 36(4):34-36. Li Huaike, Yan Jienian, Ye Yan, et al.Ultra low filtration drilling fluid for protecting fractured reservoirs[J].Petroleum Drilling Techniques, 2008, 36(4):34-36.
    [11] 舒勇, 鄢捷年, 宋付英, 等.暂堵剂图解优化新方法在钻井液设计中的应用[J].石油钻探技术, 2008, 36(6):48-51. Shu Yong, Yan Jienian, Song Fuying, et al.The application of newgraphical optimizing method of temporary plugging particle size distribution in drilling fluids design[J].Petroleum Drilling Techniques, 2008, 36(6):48-51.
    [12] 蒋官澄, 马先平, 纪朝凤, 等.广谱"油膜"暂堵剂在油层保护技术中的应用[J].应用化学, 2007, 24(6):665-669. Jiang Guancheng, Ma Xianping, Ji Chaofeng, et al.Application of a broad-spectrum oil-film temporary sealing agent to reservoir protection[J].Chinese Journal of Applied Chemistry, 2007, 24(6):665-669.
    [13] 蒋官澄, 胡成亮, 熊英, 等.广谱"油膜"暂堵钻井液体系研究[J].中国石油大学学报:自然科学版, 2006, 30(4):53-57. Jiang Guancheng, Hu Chengliang, Xiong Ying, et al.Study on system of broad-spectrum oil-film temporary sealing drilling fluid[J].Journal of China University of Petroleum:Edition of Natural Science, 2006, 30(4):53-57.
    [14] 蒋官澄, 胡成亮, 熊英, 等.广谱暂堵保护油气层钻井完井液体系研究[J].钻采工艺, 2005, 28(5):101-104. Jiang Guancheng, Hu Chengliang, Xiong Ying, et al.Study on system of broad-spectrum tempo-rary blocking drilling and completion fluid for reservoir protection[J].Drilling Production Technology, 2005, 28(5):101-104.
    [15] 王建华, 鄢捷年, 苏山林.硬脆性泥页岩井壁稳定评价新方法[J].石油钻采工艺, 2006, 28(2):28-30. Wang Jianhua, Yan Jienian, Su Shanlin.New method for evaluating borehole stability in brittle shale[J].Oil Drilling Production Technology, 2006, 28(2):28-30.
    [16] 李士斌, 高铭泽.水平层状裂缝性岩体的井壁稳定性分析[J].石油钻探技术, 2009, 37(2):35-37. Li Shibin, Gao Mingze.Wellbore stability analysis for horizontal stratified fractured rock[J].Petroleum Drilling Techniques, 2009, 37(2):35-37.
    [17] 卢运虎, 陈勉, 安生.页岩气井脆性页岩井壁裂缝扩展机理[J].石油钻探技术, 2012, 40(4):13-16. Lu Yunhu, Chen Mian, An Sheng.Brittle shale wellbore fracture propagation mechanism[J].Petroleum Drilling Techniques, 2012, 40(4):13-16.
    [18] 高莉, 张弘, 蒋官澄, 等.鄂尔多斯盆地延长组页岩气井壁稳定钻井液[J].断块油气田, 2013, 20(4):508-512. Gao Li, Zhang Hong, Jiang Guancheng, et al.Drilling fluid for wellbore stability of shale gas in Yanchang Formation, Ordos Basin[J].Fault-Block Oil Gas Field, 2013, 20(4):508-512.
  • 期刊类型引用(29)

    1. 于雷. 基于多尺度封堵的井筒强化技术研究及应用. 山东化工. 2025(03): 188-191 . 百度学术
    2. 江显俊,肖金裕,兰太华,傅相友,贾兴明. FT1井非标大井眼超深井钻井液技术优化及应用. 天然气勘探与开发. 2024(01): 63-72 . 百度学术
    3. 宋瀚轩,叶艳,郑连杰,孙振玮,周童,张謦文. 钻井液微纳米封堵性能评价方法研究进展. 应用化工. 2024(02): 383-385 . 百度学术
    4. 苏智青,李应成,许汇,孙慧,牛保伦,陈永浩,董俊艳,魏世举. 多重复合网络增韧凝胶在裂缝油藏中的封堵行为研究. 化学世界. 2024(06): 364-370 . 百度学术
    5. 李成,李伟,王波,张文哲,李锦锋,王军,常世豪. 微纳米孔缝封堵评价方法研究进展与展望. 科技通报. 2023(01): 18-24+31 . 百度学术
    6. 张洪伟,黄国强,吴红玲,杨崟,卢长博,程智. 水基钻井液用石墨烯封堵剂. 钻井液与完井液. 2023(04): 462-466 . 百度学术
    7. 刘艳阳,杨力,张顺,张茂稳,蒋思臣. 氟碳基硅烷偶联剂改性纳米SiO_2封堵剂的制备与性能评价. 广州化工. 2022(08): 89-91 . 百度学术
    8. 于雷,张敬辉,李海斌. 低活度强封堵钻井液体系在埕北32区块的研究与应用. 中外能源. 2020(S1): 62-67 . 百度学术
    9. 杨决算. 裂缝性泥页岩地层封堵材料优选方法研究与应用. 西部探矿工程. 2019(04): 103-106 . 百度学术
    10. 徐传奇,李海燕,张小锋,李德权,张睿荫,崔浪,李昱. 纳米封堵剂性能评价及机理分析. 钻采工艺. 2019(02): 100-103+7 . 百度学术
    11. 于雷,冯光通,刘宝锋,张守文. 低活度强封堵钻井液体系在准中2区的研究与应用. 承德石油高等专科学校学报. 2019(02): 18-21+52 . 百度学术
    12. 肖金裕,周华安,孙俊,刘毅,陈富全,汪凯. 玉东7-4-2井钻井液技术优化及应用. 钻井液与完井液. 2019(03): 321-324 . 百度学术
    13. 于雷,张敬辉,李公让,赵怀珍,刘天科. 低活度强抑制封堵钻井液研究与应用. 石油钻探技术. 2018(01): 44-48 . 本站查看
    14. 闫晶. 封堵评价用微裂缝岩心的模拟及模拟封堵实验. 探矿工程(岩土钻掘工程). 2018(05): 18-21 . 百度学术
    15. 刘永贵. 大庆致密油藏水平井高性能水基钻井液优化与应用. 石油钻探技术. 2018(05): 35-39 . 本站查看
    16. 陈金霞. 适用于硬脆性泥页岩的钻井液井壁稳定性评价方法. 油田化学. 2018(03): 527-532 . 百度学术
    17. 邵尚奇,丁文刚,唐婧. 可视化实验装置在石油行业中的应用与展望. 化工管理. 2017(31): 75 . 百度学术
    18. 牛似成. 定北区块盒1水平井钻井复杂机理实验分析. 石油地质与工程. 2017(05): 106-109 . 百度学术
    19. 侯杰. 硬脆性泥页岩微米-纳米级裂缝封堵评价新方法. 石油钻探技术. 2017(03): 32-37 . 本站查看
    20. 于雷,张敬辉,刘宝锋,孙荣华,季一冰,刘传清. 微裂缝发育泥页岩地层井壁稳定技术研究与应用. 石油钻探技术. 2017(03): 27-31 . 本站查看
    21. 石秉忠,解超,李胜,刘金华,陈晓飞. 杭锦旗区块锦58井区钻井液技术实践与认识. 石油钻探技术. 2017(06): 37-41 . 本站查看
    22. 孔勇,金军斌,林永学,徐江,刘贵传. 封堵防塌钻井液处理剂研究进展. 油田化学. 2017(03): 556-560 . 百度学术
    23. 杨决算,侯杰. 泥页岩微裂缝模拟新方法及封堵评价实验. 钻井液与完井液. 2017(01): 45-49 . 百度学术
    24. 褚奇,刘四海,李涛,薛玉志,宋兆辉,张凤英. 钻井液用纳米二氧化硅封堵剂的制备与性能评价. 精细石油化工. 2016(04): 4-8 . 百度学术
    25. 朱宽亮,陈金霞,卢淑芹. 南堡3号构造深层脆性泥页岩井壁稳定机理分析与实践. 钻采工艺. 2016(05): 1-4+100 . 百度学术
    26. 黄治中,李称心,王锋,王鹏,郑义平,张德莲. 逆乳化凝胶润滑封堵剂XZ-RF. 钻井液与完井液. 2016(05): 50-53 . 百度学术
    27. Xiangjun Liu,Wei Zeng,Lixi Liang,Jian Xiong. Experimental study on hydration damage mechanism of shale from the Longmaxi Formation in southern Sichuan Basin, China. Petroleum. 2016(01): 54-60 . 必应学术
    28. 邱正松,王伟吉,董兵强,王洪伟,暴丹. 微纳米封堵技术研究及应用. 钻井液与完井液. 2015(02): 6-10+97 . 百度学术
    29. 张洪伟,左凤江,李洪俊,李立昌,刘彦妹,李海彪,张雅欣. 微裂缝封堵剂评价新方法及强封堵钻井液配方优选. 钻井液与完井液. 2015(06): 43-45+49+106 . 百度学术

    其他类型引用(7)

计量
  • 文章访问数:  3015
  • HTML全文浏览量:  103
  • PDF下载量:  3674
  • 被引次数: 36
出版历程
  • 收稿日期:  2013-07-08
  • 修回日期:  2014-03-29
  • 刊出日期:  1899-12-31

目录

    /

    返回文章
    返回