LI Ling, WEI Junyi, ZHANG Qian. Development and Field Testing of a Gel Isolation Plug for Precise Managed Pressure Drilling[J]. Petroleum Drilling Techniques, 2019, 47(1): 45-51. DOI: 10.11911/syztjs.2018150
Citation: LI Ling, WEI Junyi, ZHANG Qian. Development and Field Testing of a Gel Isolation Plug for Precise Managed Pressure Drilling[J]. Petroleum Drilling Techniques, 2019, 47(1): 45-51. DOI: 10.11911/syztjs.2018150

Development and Field Testing of a Gel Isolation Plug for Precise Managed Pressure Drilling

More Information
  • Received Date: May 25, 2018
  • Revised Date: September 27, 2018
  • Available Online: September 08, 2022
  • The application of precise managed pressure drilling technology in the Moxi-Gaoshiti and Xiachuandong areas of the Sichuan Province effectively solved such challenges as leakage and coexistence of blowout and lost circulation caused by narrow safety density window of drilling fluid.However, due to the absence of effective and safe packoffs in tripping operations and well completion, the lost circulation is serious and the well control risk is extremely high.Therefore, based on the inorganic hydraulic gel theory, dense filling theory and solidification strengthening theory, a working fluid gel plug for precise managed pressure drilling was developed by using key treatment agents.The performance evaluation results suggested that the initial flow performance and stability of the working fluid gel plug were good, the anti-drilling fluid contamination ability was strong.Further, the thickening time could be controlled within 0.5-4.0 h, and the applicable temperature was 60-150 ℃.After solidification of the gel plug, the compressive strength of gel plug achieved to 8.02 MPa, the bonding strength reached 1.39 MPa/m2, the pressure bearing capacity greater than 2.69 MPa/m, and the drillability value was 1.Field application results showed that with the working fluid solidified into a plug, the gel plug could effectively seal off oil and gas, and in that way ensure safe tripping during precise managed pressure drilling.

  • [1]
    周英操, 杨雄文, 方世良, 等.PCDS-Ⅰ精细控压钻井系统研制与现场试验[J].石油钻探技术, 2011, 39(4):7-12. doi: 10.3969/j.issn.1001-0890.2011.04.002

    ZHOU Yingcao, YANG Xiongwen, FANG Shiliang, et al.Development and field test of PCDS-I precise managed pressure drilling system[J].Petroleum Drilling Techniques, 2011, 39(4):7-12. doi: 10.3969/j.issn.1001-0890.2011.04.002
    [2]
    周峰, 左星, 李明宗.精细控压钻井技术在高石001-H2井的实践与认识[J].钻采工艺, 2017, 40(5):19-21. doi: 10.3969/J.ISSN.1006-768X.2017.05.06

    ZHOU Feng, ZUO Xing, LI Mingzong.Application of managed pressure drilling on Well GS001-H2 and understandings obtained[J].Drilling & Production Technology, 2017, 40(5):19-21. doi: 10.3969/J.ISSN.1006-768X.2017.05.06
    [3]
    左星, 周井红, 刘庆.精细控压钻井技术在高石001-X4井的实践与认识[J].天然气勘探与开发, 2016, 30(3):70-72. http://d.old.wanfangdata.com.cn/Periodical/trqktykf201603016

    ZUO Xing, ZHOU Jinghong, LIU Qing.Application of fine managed pressure drilling to GS001-X4 Well[J].Natural Gas Exploration and Development, 2016, 30(3):70-72. http://d.old.wanfangdata.com.cn/Periodical/trqktykf201603016
    [4]
    彭明佳, 周英操, 郭庆丰, 等.窄密度窗口精细控压钻井重浆帽优化技术[J].石油钻探技术, 2015, 43(6):24-28. doi: 10.11911/syztjs.2018140

    PENG Mingjia, ZHOU Yingcao, GUO Qingfeng, et al.Optimization of heavy mud cap in narrow density window precise managed pressure drilling[J].Petroleum Drilling Techniques, 2015, 43(6):24-28. doi: 10.11911/syztjs.2018140
    [5]
    左星, 肖润德, 梁伟, 等.精细控压钻井技术在高石19井实践与认识[J].钻采工艺, 2014, 37(6):9-10. doi: 10.3969/J.ISSN.1006-768X.2014.06.03

    ZUO Xing, XIAO Runde, LIANG Wei, et al.Practice of precise managed pressure drilling technology in Well GS19[J].Drilling & Production Technology, 2014, 37(6):9-10. doi: 10.3969/J.ISSN.1006-768X.2014.06.03
    [6]
    陈芳, 杨立军, 马平平, 等.冻胶阀全过程欠平衡钻井技术在马207井的应用[J].西部探矿工程, 2010, 22(9):97-99, 101. doi: 10.3969/j.issn.1004-5716.2010.09.032

    CHEN Fang, YANG Lijun, MA Pingping, et al.Application of underbalance well drilling gel valve technology on Ma207 Well[J].West-China Exploration Engineering, 2010, 22(9):97-99, 101. doi: 10.3969/j.issn.1004-5716.2010.09.032
    [7]
    张宝龙, 刘伟, 屈志伟, 等.井下套管阀在彩551井的应用[J].石油钻采工艺, 2010, 32(增刊1):76-79. http://d.old.wanfangdata.com.cn/Periodical/syzcgy2010z1019

    ZHANG Baolong, LIU Wei, QU Zhiwei, et al.Application of downhole casing valve in Cai551 well drilling[J].Oil Drilling & Production Technology, 2010, 32(suppelement 1):76-79. http://d.old.wanfangdata.com.cn/Periodical/syzcgy2010z1019
    [8]
    江迎军, 肖润德, 刘强.顶驱钻机用不压井起下钻装置的实验研究[J].钻采工艺, 2015, 38(2):86-88. doi: 10.3969/J.ISSN.1006-768X.2015.02.24

    JIANG Yingjun, XIAO Runde, LIU Qiang.Study on snubbing unit used for top drive rig[J].Drilling & Production Technology, 2015, 38(2):86-88. doi: 10.3969/J.ISSN.1006-768X.2015.02.24
    [9]
    刘德基, 廖锐全, 张慢来, 等.冻胶阀技术及应用[J].钻采工艺, 2013, 36(2):28-29, 33. doi: 10.3969/J.ISSN.1006-768X.2013.02.08

    LIU Deji, LIAO Ruiquan, ZHANG Manlai, et al.Technology and application of gel valve[J].Drilling & Production Technology, 2013, 36(2):28-29, 33. doi: 10.3969/J.ISSN.1006-768X.2013.02.08
    [10]
    王在明, 朱宽亮, 冯京海, 等.高温冻胶阀的研制与现场试验[J].石油钻探技术, 2015, 43(4):78-82. doi: 10.11911/syztjs.2018140

    WANG Zaiming, ZHU Kuanliang, FENG Jinghai, et al.Development and field test of high-temperature gel valve[J].Petroleum Drilling Techniques, 2015, 43(4):78-82. doi: 10.11911/syztjs.2018140
    [11]
    梁大川, 杜小勇, 魏凤娟, 等.深井抗温聚合物凝胶封隔技术研究及应用[J].钻采工艺, 2013, 36(4):93-95. doi: 10.3969/J.ISSN.1006-768X.2013.04.28

    LIANG Dachuan, DU Xiaoyong, WEI Fengjuan, et al.Study of high temperature polymer gel sealing technology and its application in deep well[J].Drilling & Production Technology, 2013, 36(4):93-95. doi: 10.3969/J.ISSN.1006-768X.2013.04.28
    [12]
    DOBSON J W Jr, TRESCO K O, GEERDES B K.Ultra high viscosity pill and methods for use with an oil based drilling system: US20110009298[P].2013-01-11.
    [13]
    赵启阳, 邓慧, 王伟, 等.一种可固化堵漏工作液的室内研究[J].钻井液与完井液, 2013, 30(1):41-44. doi: 10.3969/j.issn.1001-5620.2013.01.011

    ZHAO Qiyang, DENG Hui, WANG Wei, et al.Laboratory study on curing lost circulation control fluid[J].Drilling Fluid & Completion Fluid, 2013, 30(1):41-44. doi: 10.3969/j.issn.1001-5620.2013.01.011
    [14]
    陈友治, 李方贤, 王红喜.水乳环氧对水泥砂浆强度的影响[J].重庆大学学报(自然科学版), 2003, 26(12):48-50, 54. http://d.old.wanfangdata.com.cn/Periodical/cqdxxb200312013

    CHEN Youzhi, LI Fangxian, WANG Hongxi.The influence on the strength of cement mortars by emulsified epoxy[J].Journal of Chongqing University(Natural Science Edition), 2003, 26(12):48-50, 54. http://d.old.wanfangdata.com.cn/Periodical/cqdxxb200312013
    [15]
    顾亚敏, 方永浩.碱矿渣水泥的收缩与开裂特性及其减缩与增韧[J].硅酸盐学报, 2012, 40(1):76-84. http://d.old.wanfangdata.com.cn/Periodical/gsyxb201201014

    GU Yamin, FANG Yonghao.Shrinkage, cracking, shrinkage-Reducing and toughening of alkali-actived slage cement:a short review[J].Journal of the Chinese Ceramic Society, 2012, 40(1):76-84. http://d.old.wanfangdata.com.cn/Periodical/gsyxb201201014
  • Related Articles

    [1]YANG Chunhe, WANG Lei, ZENG Yijin, GUO Yintong, YANG Guangguo, LIU Kui. A Laboratory Method for Evaluating the Bonding Tensile Strength of the Cement–Formation Interface Considering Multiple Factors[J]. Petroleum Drilling Techniques, 2023, 51(4): 48-54. DOI: 10.11911/syztjs.2023041
    [2]NIU Chengcheng, HOU Xutian, LI Yang. Triaxial Mechanical Tests and Multiple Regression Strength Analysis of Simalted Frozen Soil Sample from Mohe[J]. Petroleum Drilling Techniques, 2021, 49(3): 27-34. DOI: 10.11911/syztjs.2021049
    [3]LI Shuai, CHEN Junbin, ZHAO Qinlei. Experimental Study on the Scale Effect Law of Shale Strength and Deformation under Different Loading Modes[J]. Petroleum Drilling Techniques, 2020, 48(5): 39-48. DOI: 10.11911/syztjs.2020075
    [4]ZOU Deyong, WANG Gaoming, XING Chen. Experimental Study on Igneous Rock Abrasiveness[J]. Petroleum Drilling Techniques, 2020, 48(3): 41-46. DOI: 10.11911/syztjs.2020047
    [5]CHAI Long, LIN Yongxue, JING Junbin, HAN Zixuan. Anti-Gas Channeling Technology with Gas-Block Plug for High Temperature and High Pressure Wells in the Periphery of the Tahe Oilfield[J]. Petroleum Drilling Techniques, 2018, 46(5): 40-45. DOI: 10.11911/syztjs.2018111
    [6]XIONG Min. Origin Analysis and Elimination of the S-Shaped Strength Development Curve of Cement Slurry[J]. Petroleum Drilling Techniques, 2018, 46(3): 39-43. DOI: 10.11911/syztjs.2018064
    [7]Lin Yongxue, Gao Shuyang, Zeng Yijin. Evaluation and Analysis of Rock Strength for the Longmaxi Shale[J]. Petroleum Drilling Techniques, 2015, 43(5): 20-25. DOI: 10.11911/syztjs.201505004
    [8]Yang Henglin, Shen Ruichen, Fu Li. Composition and Mechanical Properties of Gas Shale[J]. Petroleum Drilling Techniques, 2013, 41(5): 31-35. DOI: 10.3969/j.issn.1001-0890.2013.05.006
    [9]Li Wei, Yan Tie, Chen Shichun, Cong Changjiang. Mechanism Analysis of Tooth Sink into Rock Based on Unified Strength Theory[J]. Petroleum Drilling Techniques, 2013, 41(4): 32-36. DOI: 10.3969/j.issn.1001-0890.2013.04.008
    [10]Liang Erguo, Li Zifeng, Zhao Jinhai. Model for Collapsing Strength Calculation of Worn Casing[J]. Petroleum Drilling Techniques, 2012, 40(2): 41-45. DOI: 10.3969/j.issn.1001-0890.2012.02.008
  • Cited by

    Periodical cited type(7)

    1. 李思琪,陈卓,李杉,李玮,郭金玉,刘德伟. 基于定切深和状态依赖时滞的共振冲击钻井系统动力学特性. 中国石油大学学报(自然科学版). 2024(01): 124-132 .
    2. 李根生,穆总结,田守嶒,黄中伟,孙照伟. 冲击破岩钻井提速技术研究现状与发展建议. 新疆石油天然气. 2024(01): 1-12 .
    3. 张诗达,朱勇,高强,苏红. 旋冲钻井技术研究现状与展望. 排灌机械工程学报. 2024(05): 497-507 .
    4. 杨小聪,黄丹,岳小磊,王想. 非煤矿山机械连续采矿技术研究进展与发展趋势. 有色金属(矿山部分). 2024(06): 1-24 .
    5. 向玲,王成东,周政. 硬岩地基基础快速成桩技术的研究进展. 城市建设理论研究(电子版). 2024(32): 117-119 .
    6. 刘永旺,魏森,管志川,邹德永,梁红军,陶兴华,玄令超,张建龙. 旋转冲击钻井方法硬岩破岩钻进特性的实验研究. 实验技术与管理. 2022(05): 44-48+59 .
    7. 王少锋,孙立成,周子龙,吴毓萌,石鑫垒. 非爆破岩理论和技术发展与展望. 中国有色金属学报. 2022(12): 3883-3912 .

    Other cited types(4)

Catalog

    Article Metrics

    Article views (9018) PDF downloads (41) Cited by(11)
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return