地质出版社有限公司 中国地质科学院勘探技术研究所主办

地质钻探堵漏用盐水水泥浆的实验研究

杨宽才, 孔二伟. 2023. 地质钻探堵漏用盐水水泥浆的实验研究. 钻探工程, 50(5): 95-100. doi: 10.12143/j.ztgc.2023.05.014
引用本文: 杨宽才, 孔二伟. 2023. 地质钻探堵漏用盐水水泥浆的实验研究. 钻探工程, 50(5): 95-100. doi: 10.12143/j.ztgc.2023.05.014
YANG Kuancai and KONG Erwei, . 2023. Experimental study on salt-water cement slurry for plugging in geological drilling. DRILLING ENGINEERING, 50(5): 95-100. doi: 10.12143/j.ztgc.2023.05.014
Citation: YANG Kuancai and KONG Erwei, . 2023. Experimental study on salt-water cement slurry for plugging in geological drilling. DRILLING ENGINEERING, 50(5): 95-100. doi: 10.12143/j.ztgc.2023.05.014

地质钻探堵漏用盐水水泥浆的实验研究

详细信息
    作者简介: 杨宽才,男,汉族,1983年生,高级工程师,勘查技术与工程专业,主要从事勘察工程研究工作,河南省郑州市高新技术开发区科学大道81号地质科技大厦12楼1209室,157099086@qq.com。

Experimental study on salt-water cement slurry for plugging in geological drilling

  • 在我国青海、新疆等干旱地区,部分矿区现场水为卤水,含盐量较高,水泥堵漏时需要采用盐水配制水泥浆。室内通过对多种水泥外加剂的优选,研制了一套地质钻探堵漏用盐水水泥浆体系,对其常规性能和堵漏性能进行了综合评价。结果表明:该体系具有良好的流动性、降失水性和沉降稳定性;早期抗压、抗折强度更大,终凝时间更短,5%氯化钠对于水泥浆有明显的早强、促凝作用;在30 MPa、45~75 ℃下的稠化时间为110~170 min,浆体稳定,稠化特性良好,可有效封堵1~3 mm的孔板、缝板。盐水水泥浆体系在类似地区的裂缝性地层堵漏作业中将有良好的应用前景。
  • 加载中
  • [1]

    薛玉志,刘振东,唐代绪,等.裂缝性地层堵漏配方及规律性研究[J].钻井液与完井液,2009,26(6):28-30.

    XUE Yuzhi, LIU Zhendong, TANG Daixu, et al. Study on the formulation of lost circulation control fluid and the laws of lost circulation control for fractured formations[J]. Drilling Fluid & Completion Fluid, 2009,26(6):28-30.

    [2]

    [2] 徐同台,刘玉杰,申威.钻井工程防漏堵漏技术[M].北京:石油工业出版社,1997.XU Tongtai, LIU Yujie, SHEN Wei. Drilling Engineering Leak Prevention and Sealing Technology[M]. Beijing: Petroleum Industry Press, 1997.

    [3]

    [3] 张希文,李爽,张洁,等.钻井液堵漏材料及防漏堵漏技术研究进展[J].钻井液与完井液,2009,26(6):74-76.

    ZHANG Xiwen, LI Shuang, ZHANG Jie, et al. Research progress on lost circulation materials and lost circulation control technology[J]. Drilling Fluid & Completion Fluid, 2009,26(6):74-76.

    [4]

    [4] 贾利春,陈勉,侯冰,等.裂缝性地层钻井液漏失模型及漏失规律[J].石油勘探与开发,2014,41(1):95-101.

    JIA Lichun, CHEN Mian, HOU Bing, et al. Drilling fluid loss model and loss dynamic behavior in fractured formations[J]. Petroleum Exploration and Development, 2014,41(1):95-101.

    [5]

    [5] 吕斌,侯力伟,王克诚.新型承压堵漏水泥浆体系的室内研究[J].钻井液与完井液,2011,28(4):51-53.

    Bin LÜ, HOU Liwei, WANG Kecheng. Laboratory research of new sealing under pressure cement slurry system[J]. Drilling Fluid & Completion Fluid, 2011,28(4):51-53.

    [6]

    [6] 李子硕,薛曼,李智,等.松软煤层加固用泡沫水泥浆的实验研究[J].钻探工程,2023,50(3):130-138.

    LI Zishuo, XUE Man, LI Zhi, et al. Experimental study of foamed cement slurry for soft coal seam reinforcement[J]. Drilling Engineering, 2023,50(3):130-138.

    [7]

    [7] 刘学鹏.温敏堵漏水泥浆体系研究与应用[J].钻探工程,2022,49(2):110-116.

    LIU Xuepeng. Research and application of the temperature sensitive plugging cement slurry system[J]. Drilling Engineering, 2022,49(2):110-116.

    [8]

    [8] 景龙,李兴权,鲍石磊,等.基于压力平衡条件下“戴帽”固井注水泥技术探讨[J].钻探工程,2023,50(2):79-84.

    JING Long, LI Xingquan, BAO Shilei, et al. Discussion of cement injection technology for “cap” cementation based on balanced pressure condition[J]. Drilling Engineering, 2023,50(2):79-84.

    [9]

    [9] 张敬涛,王晓亮.Y油田盐膏层固井水泥浆及前置液性能评价[J].化学工程师,2022,36(12):58-62,41.

    ZHANG Jingtao, WANG Xiaoliang. Performance evaluation of cementing slurry and preflush for salt gypsum formation in Y Oilfield[J]. Chemical Engineer, 2022,36(12):58-62,41.

    [10]

    [10] Cunningham Willis C, Smith Dwight K. Effect of salt cement filtrate on subsurface formations[J]. Journal of Petroleum Technology, 1968,20(3):259-264.

    [11]

    [11] Slagle Knox A, Smith Dwight K. Salt cement for shale and bentonitic sands[J]. Journal of Petroleum Technology, 1963,15(2):187-194.

    [12]

    [12] Goodwin Korwin. J., Keith Phipps. Salt free cement-An alternative to collapsed casing in plastic salts[J]. Journal of Petroleum Technology, 1983,36(2):320-324.

    [13]

    [13] Ismail S. A. A., Khalaf Fouad. Effectiveness of low-salt cement opposite salt bodies[C]//Middle East Oil Show. SPE-25542-MS, 1993.

    [14]

    [14] 张弛,刘硕琼,徐明,等.低温胶乳盐水水泥浆体系研究与应用[J].钻井液与完井液,2013,30(2):63-65.

    ZHANG Chi, LIU Shuoqiong, XU Ming, et al. Research on low temperature latex brine cement slurry system[J]. Drilling Fluid & Completion Fluid, 2013,30(2):63-65.

    [15]

    [15] 罗刚,舒福昌,向兴金.高温盐水水泥浆体系的室内研究[J].海洋石油,2009,29(2):92-96.

    LUO Gang, SHU Fuchang, XIANG Xingjin. Laboratory study of high-temperature saltwater cement slurry[J]. Offshore Oil, 2009,29(2):92-96.

    [16]

    [16] 丹美涵.抗盐高性能水泥浆体系研究与应用[J].钻井液与完井液,2021,38(2):249-254.

    DAN Meihan. Study and application of a high-performance salt-resistant cement slurry[J]. Drilling Fluid & Completion Fluid, 2021,38(2):249-254.

    [17]

    [17] 陈良,彭博,黄敏.聚合物氯化钾水泥浆体系性能评价及应用研究[J].长江大学学报(自然科学版),2015, 12(25):14-16.

    CHEN Liang, PENG Bo, HUANG Min. Performance evaluation and application of polymer potassium chloride cement slurry system in well GK-1[J]. Journal of Yangtze University (Natural Science Edition), 2015,12(25):14-16.

    [18]

    [18] Niu X, Feng G, Han Y, et al. Synergistic effect of surfactant and chlorine salt on dispersion of nano-SiO2 and performance of cement-based grout containing a large amount of bentonite[J]. Cement and Concrete Composites, 2022,131:104587.

    [19]

    [19] Gilson Campos, Simao Cristina Alex, Miranda Cristiane Richard de, et al. Salt tolerant cement systems to mitigate gelling effect[C]//IADC/SPE Asia Pacific Drilling Technology Conference. SPE-170477-MS, 2014.

    [20]

    [20] Al Moajil Abdullah M., Nasr-El-Din Hisham A., Kar Yusuf, et al. Dispersants for cement and salt contaminated manganese tetraoxide high-density water-based drilling fluids[C]//Abu Dhabi International Petroleum Exhibition and Conference. SPE-177935-MS, 2015.

    [21]

    [21] Kang C, Kim T. Influence of brine on hydration reaction of calcium sulfoaluminate and slag blended cement[J]. Case Studies in Construction Materials, 2023,18:e02159.

    [22]

    [22] Reddy B. R., Contreras Elizabeth Q., Boul Peter J. Relating cement additive performance to mix water composition for deep water and salt zone applications[C]//Deepwater Drilling and Completions Conference. SPE-180344-MS, 2016.

    [23]

    [23] 腾新荣.表面物理化学[M].北京:化学工业出版社,2009.TENG Xinrong. Surface Physical Chemistry[M]. Beijing: Chemical Industry Press, 2009.

    [24]

    [24] 王复生,朱元娜,孙胜泉.氯化钠对普通硅酸盐水泥的早强作用和结合方式的试验研究[C]//“全国特种混凝土技术及工程应用”学术交流会暨2008年混凝土质量专业委员会年会论文集.西安:2008:184-189.

    WANG Fusheng, ZHU Yuanna, SUN Shengquan. Experimental study on the early strength effect and bonding mode of sodium chloride on ordinary Portland cement[C]//Proceedings of the Academic Exchange Conference on “National Special Concrete Technology and Engineering Applications” and the 2008 Annual Meeting of the Concrete Quality Professional Committee. Xi’an: 2008:184-189.

    [25]

    [25] 杨现禹,岳也,蔡记华.化学发泡式泡沫水泥浆稠化实验方法对比与分析[J].钻井液与完井液,2016,33(2):96-100.

    YANG Xianyu, YUE Ye, CAI Jjihua. Comparison and analysis of thickening experiment methods for chemically foamed cement slurry[J]. Drilling Fluid & Completion Fluid, 2016,33(2):96-100.

    [26]

    [26] 谷穗,乌效鸣,蔡记华.纤维水泥浆堵漏实验研究[J].探矿工程(岩土钻掘工程),2009,36(4):4-6.

    GU Sui, WU Xiaoming, CAI Jihua. Sealing experiment research on fiber cement slurry[J]. Exploration Engineering (Rock & Soil Drilling and Tunneling), 2009,36(4):4-6.

  • 加载中
计量
  • 文章访问数:  155
  • PDF下载数:  108
  • 施引文献:  0
出版历程
收稿日期:  2023-06-07
修回日期:  2023-07-10

目录