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复杂山区水平绳索取心定向钻进聚合醇绿色防塌冲洗液研究

李冰乐, 王胜, 袁长金, 张洁, 吴丽钰, 宋礼勇, 徐正宣, 陈明浩, 解程超. 2023. 复杂山区水平绳索取心定向钻进聚合醇绿色防塌冲洗液研究. 钻探工程, 50(6): 86-92. doi: 10.12143/j.ztgc.2023.06.011
引用本文: 李冰乐, 王胜, 袁长金, 张洁, 吴丽钰, 宋礼勇, 徐正宣, 陈明浩, 解程超. 2023. 复杂山区水平绳索取心定向钻进聚合醇绿色防塌冲洗液研究. 钻探工程, 50(6): 86-92. doi: 10.12143/j.ztgc.2023.06.011
LI Bingle, WANG Sheng, YUAN Changjin, ZHANG Jie, WU Liyu, SONG Liyong, XU Zhengxuan, CHEN Minghao and XIE Chengchao, . 2023. Research on polymer alcohol anti-collapse flushing fluid for directional drilling of horizontal wire-line coring in complex mountain areas. DRILLING ENGINEERING, 50(6): 86-92. doi: 10.12143/j.ztgc.2023.06.011
Citation: LI Bingle, WANG Sheng, YUAN Changjin, ZHANG Jie, WU Liyu, SONG Liyong, XU Zhengxuan, CHEN Minghao and XIE Chengchao, . 2023. Research on polymer alcohol anti-collapse flushing fluid for directional drilling of horizontal wire-line coring in complex mountain areas. DRILLING ENGINEERING, 50(6): 86-92. doi: 10.12143/j.ztgc.2023.06.011

复杂山区水平绳索取心定向钻进聚合醇绿色防塌冲洗液研究

  • 基金项目:

    珠峰科学研究计划项目“青藏高原深部找矿快速绿色智能钻进关键技术研究”(编号:80000-2022ZF11411)

详细信息
    作者简介: 李冰乐,男,汉族,1998年生,硕士研究生,地质资源与地质工程专业,从事钻井工程相关方向研究工作,四川省成都市成华区二仙桥东三路1号,1508021804@qq.com。

Research on polymer alcohol anti-collapse flushing fluid for directional drilling of horizontal wire-line coring in complex mountain areas

  • 在西部艰险山区相关隧道及地下工程的勘察施工中,与传统垂直孔相比,水平定向绳索取心钻进勘察效率更高。在地质条件复杂、生态环境脆弱区,钻进过程中易出现塌孔、漏失等问题,要求所用冲洗液在保证流变性能的同时需具备抑制性强、无毒无害、绿色环保等特点。针对绳索取心水平定向钻进冲洗液性能问题,选择环保易降解、抑制性强的聚合物多元醇为主要研究对象,选择环保纤维素及纳米SiO2,以提升其自身流变性能。所研制的聚合醇防塌冲洗液体系:2% PVA+0.5‰甲基纤维素MC-9+0.5‰纤维素羟烷基醚LE-5+0.1% SiO2+0.3‰淀粉类降滤失剂DD-1+0.2%有机硅消泡剂DS-957+0.8% KCl,由环保型材料构成,流变性能良好,防塌抑制能力也可达到定向取心钻进工程要求,为解决水平绳索取心定向钻进中的冲洗液工艺技术难题提供了新思路,对类似工程具有借鉴意义与参考价值。
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  • [1]

    周福军,杜世回,孟祥连,等.高原山区铁路勘察多角度钻探和测试技术研究[J].铁道工程学报,2021,38(12):1-6.

    ZHOU Fujun, DU Shihui, MENG Xianglian, et al. Research on multi-angle drilling and testing technology of railway survey in plateau mountain area[J]. Journal of Railway Engineering, 2021,38(12):1-6.

    [2]

    [2] 吴纪修,尹浩,张恒春,等.水平定向勘察技术在长大隧道勘察中的应用现状与展望[J].钻探工程,2021,48(5):1-8.

    WU Jixiu, YIN Hao, ZHANG Hengchun, et al. Application status and R & D trend of horizontal directional investigation technology for long tunnel investigation[J]. Drilling Engineering, 2021,48(5):1-8.

    [3]

    [3] 周梦迪,刘欢,韩丽丽,等.用于工程勘察的水平定向钻探技术探讨[J].钻探工程,2023,50(2):136-143.

    ZHOU Mengdi, LIU Huan,HAN Lili, et al. Discussion on the horizontal directional drilling technology for engineering investigation[J]. Drilling Engineering, 2023,50(2):136-143.

    [4]

    [4] 肖华,刘建国,徐正宣,等.川藏铁路勘察超长水平孔绳索取心钻探技术[J].钻探工程,2021,48(5):18-26.

    XIAO Hua, LIU Jianguo, XU Zhengxuan, et al. Wire-line core drilling technology of ultra-long horizontal investigation boreholes for the Sichuan-Tibet Railway[J]. Drilling Engineering, 2021,48(5):18-26.

    [5]

    [5] 邹玉亮.软弱土层穿越的稳壁防偏钻井液技术研究[D].武汉:中国地质大学,2021.ZOU Yuliang. Research on wall-stabilizing anti-deflection drilling fluid technology for soft soil crossing[D]. Wuhan: China University of Geosciences, 2021.

    [6]

    [6] 赵大军,吴金发.隧道工程勘察水平孔钻进钻具的运动与受力分析[J].探矿工程(岩土钻掘工程),2020,47(11):12-18,24.

    ZHAO Dajun, WU Jinfa. Analysis of movement and force of horizontal drilling toolsfor tunnel engineering investigation[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2020,47(11):12-18,24.

    [7]

    [7] Bland R G, Waughman R R, Tomkins P G, et al. Water-based alternatives to oil-based muds: do they actually exist?[C]//Society of Petroleum Engineers, 2002.

    [8]

    [8] Bland R Q. Quality criteria in selecting glycols as alternatives to oil-based drilling fluid systems[C]//Society of Petroleum Engineers, 1994.

    [9]

    [9] Reid P I, Elliott G P, Minton R C, et al. Reduced environmental impact and improved drilling performance with water-based muds containing glycols[C]//Society of Petroleum Engineers, 1993.

    [10]

    [10] 杨小敏,睢文云,郑伟.聚醚醇钻井液在花X39井的应用[J].新疆石油天然气,2020,16(3):38-41,3.

    YANG Xiaomin, SUI Wenyun, ZHENG Wei. Application of polyether alcohol drilling fluid in Well Hua X39[J]. Xinjiang Oil and Gas, 2020,16(3):38-41,3.

    [11]

    [11] 秦国川,许明标,何淼,等.聚合醇在钻井液中的应用研究进展[J].高分子通报,2021(5): 65-73.

    QIN Guochuan, XU Mingbiao, HE Miao, et al. Research progress of polyol application in drilling fluid[J]. Polymer Bulletin, 2021(5):65-73.

    [12]

    [12] 苏力才,谢健全,李永卫,等.PVA1788无固相冲洗液体系的研究与应用[J].钻探工程,2022,49(4):68-73.

    SU Licai, XIE Jianquan, LI Yongwei, et al. Research and application of PVA1788 solid-free drilling fluid system[J]. Drilling Engineering, 2022,49(4):68-73.

    [13]

    [13] 苏力才,蒙学礼,李永卫,等.PVA1788成膜体系无固相冲洗液在桂柳地1井的应用[J].钻探工程,2022,49(5):57-63.

    SU Licai, MENG Xueli, LI Yongwei, et al. Application of PVA1788 film-forming system solid-free drilling fluid in Well Guiliudi-1[J]. Drilling Engineering, 2022,49(5):57-63.

    [14]

    [14] 万里平,张小龙,张力,等.渤海X油田无土相水基钻井液室内研究[J].钻井液与完井液,2021,38(5):605-610.

    WAN Liping, ZHANG Xiaolong, ZHANG Li, et al. Laboratory study on clay-free water-based drilling fluid in X Oilfield of Bohai Sea[J]. Drilling Fluid & Completion Fluid, 2021,38(5):605-610.

    [15]

    [15] 张星元.可膨胀复合微球的制备及其在钻井液中的应用[D].雅安:西南石油大学,2019.ZHANG Xingyuan. Preparation of expandable composite microspheres and their application in drilling fluid[D]. Ya’an: Southwest Petroleum University, 2019.

    [16]

    [16] Rajat J, Vikas M, Sharma V P. Evaluation of polyacrylamide-grafted-polyethylene glycol/silica nanocomposite as potential additive in water based drilling mud for reactive shale formation [J]. Journal of Natural Gas Science and Engineering, 2015,26:526-537.

    [17]

    [17] 李佳琦,杨海彤,葛兵,等.一种耐高温交联淀粉钻井液降滤失剂的制备与评价[J].特种油气藏,2022,29(4):164-168.

    LI Jiaqi, YANG Haitong, GE Bing, et al. Preparation and evaluation of a high temperature resistant fluid loss reducer for starch drilling fluid[J]. Special Oil and Gas Reservoirs, 2022,29(4):164-168.

    [18]

    [18] 王雅新,卢景峰,谢富强.钻井液用高效有机硅消泡剂的研制[J].天津化工,2011,25(4):37-38.

    WANG Yaxin, LU Jingfeng, XIE Fuqiang. Development of efficient silicone defoamer for drilling fluid [J]. Tianjin Chemical Industry, 2011,25(4):37-38.

    [19]

    [19] 顾雪凡,王棚,高龙,等.我国天然高分子基钻井液体系研究进展[J].西安石油大学学报(自然科学版),2020,35(5):83-91.

    GU Xuefan, WANG Peng, GAO Long, et al. Research progress of natural polymer based drilling fluid system in China[J]. Journal of Xi’an Shiyou University (Natural Science Edition), 2020,35(5):83-91.

    [20]

    [20] GB/T 15441—1994,水质 急性毒性的测定 发光细菌法[S].GB/T 15441—1994, Water quality—Determination of the acute toxicity—Luminescent bacteria test[S].

    [21]

    [21] 司西强,王中华,吴柏志.中国页岩油气水平井水基钻井液技术现状及发展趋势[J].精细石油化工进展,2022,23(1):42-50.

    SI Xiqiang, WANG Zhonghua, WU Baizhi. Current situation and development trend of water-based drilling fluids technology for shale oil and gas horizontal wells in China[J]. Advances in Fine Petrochemicals, 2022,23(1):42-50.

    [22]

    [22] 陈佐林,苗永旺,朱胥仁,等.高原、高地温隧道施工造价的分析、研究[J].城市建设理论研究,2019(2):129-130.

    CHEN Zuolin, MIAO Yongwang, ZHU Xuren, et al. Analysis and research on the construction cost of Plateau and high ground temperature tunnel[J]. Urban Construction Theory Research, 2019(2):129-130.

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出版历程
收稿日期:  2023-03-01
修回日期:  2023-05-27

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