• 中文核心期刊
  • 中国科技核心期刊
  • RCCSE中国核心学术期刊

低黏度超细水泥浆液单裂隙注浆试验效果分析

张毅, 马有宝, 左志昊, 赵真, 张英实, 赵磊

张毅, 马有宝, 左志昊, 赵真, 张英实, 赵磊. 低黏度超细水泥浆液单裂隙注浆试验效果分析[J]. 煤矿安全, 2020, 51(11): 55-60.
引用本文: 张毅, 马有宝, 左志昊, 赵真, 张英实, 赵磊. 低黏度超细水泥浆液单裂隙注浆试验效果分析[J]. 煤矿安全, 2020, 51(11): 55-60.
ZHANG Yi, MA Youbao, ZUO Zhihao, ZHAO Zhen, ZHANG Yingshi, ZHAO Lei. Analysis on Experimental Results of Single Crack Grouting for Low Viscosity Ultra-fine Cement Slurry[J]. Safety in Coal Mines, 2020, 51(11): 55-60.
Citation: ZHANG Yi, MA Youbao, ZUO Zhihao, ZHAO Zhen, ZHANG Yingshi, ZHAO Lei. Analysis on Experimental Results of Single Crack Grouting for Low Viscosity Ultra-fine Cement Slurry[J]. Safety in Coal Mines, 2020, 51(11): 55-60.

低黏度超细水泥浆液单裂隙注浆试验效果分析

Analysis on Experimental Results of Single Crack Grouting for Low Viscosity Ultra-fine Cement Slurry

  • 摘要: 针对城郊煤矿现场注浆堵水问题,通过室内注浆试验来模拟现场的注浆工程,对比3种不同黏度的超细水泥浆液的注浆效果;对泥质砂岩单裂隙试件进行注浆试验,测试砂岩单裂隙试件注浆后的黏结强度恢复能力和抗渗能力,宏观评价注浆效果;运用SEM电镜扫描与数字图像处理技术,统计注浆前后的砂岩单裂隙试件断面的特征孔隙率,微观评价注浆效果。研究表明:优化组低黏度浆液注浆后黏结强度提升了35%,渗水速率平均下降到1.39 mL/h,并且断面特征孔隙率达到最小值1.31%,表明优化组低黏度超细水泥浆液具有良好的注浆效果。
    Abstract: For the problem of grouting and plugging water in Chengjiao Coal Mine, the indoor grouting experiment is used to simulate the grouting project on site. The grouting effect of three kinds of ultra-fine cement grout with different viscosity is compared. The grouting test was carried out on the single fracture specimen of argillite sandstone to test the bonding strength recovery ability and impermeability after the grouting of the single fracture specimen of sandstone, and to evaluate the grouting effect at a macro level. By means of SEM scanning and digital image processing technology, the characteristic porosity of the sandstone single crack specimen before and after grouting is counted, and the grouting effect is evaluated microscopically. The research shows that the bond strength of the optimized low-viscosity slurry increased by 35%, the water seepage rate decreased to 1.39 mL/h, and the cross-sectional characteristic porosity reached the minimum value of 1.31%, indicating that the optimized group of low-viscosity ultra-fine cement slurry has good grouting effect.
  • [1] 柏建彪,侯朝炯.深部巷道围岩控制原理与应用研究[J].中国矿业大学学报,2006,35(2):145-148.
    [2] 苏培莉.裂隙煤岩体注浆加固渗流机理及其应用研究[D].西安:西安科技大学,2010.
    [3] 林东才,魏夕合,刘尊欣,等.义桥煤矿立井井筒涌水机理与注浆封堵技术[J].煤矿安全,2012,43(3):34.
    [4] 杨米加,陈明雄,贺永年.裂隙岩体注浆模拟实验研究[J].实验力学,2001,16(1):105-112.
    [5] 徐志鹏.裂隙注浆模拟试验研究进展[J].建井技术,2012(6):26-29.
    [6] 郝哲,王来贵,刘斌.岩体注浆理论与应用[M].北京:地质出版社,2007.
    [7] 《岩土注浆理论与工程实例》协作组.岩土注浆理论与工程实例[M].北京: 科学出版社,2001.
    [8] R Kleinlugtenbelt, A Bezuijen, A F van Tol. Model tests on compensation grouting[J]. Tunneling and Underground Space Technology, 2006, 21(3/4): 435-436.
    [9] Kilic A, Yasar E, Celik A G. Effect of grout properties on the pull-out load capacity of fully grouted rock bolt[J]. Tunnelling and Underground Space Technology,2002, 17(4): 355-362.
    [10] S W Lee, M D Bolton, R J Mair, et al. Centrifuge modelling of injection near tunnel lining[J]. International Journal of Physical Modelling in Geotechnics,2001, 1(1): 9-24.
    [11] Eisa, K. Compensation grouting in sand[D]. London: University of Cambridge, 2008.
    [12] 何修仁.注浆加固与堵水[M].沈阳:东北工学院出版社,1990:22-27.
    [13] 郭密文,隋旺华.高压环境条件下注浆模型试验系统设计[J].工程地质学报,2010(5):720-724.
    [14] 郭密文.高压封闭环境孔隙介质中化学浆液扩散机制试验研究[D].徐州:中国矿业大学,2010.
    [15] 杨仁树,薛华俊,郭东明,等.基于注浆试验的深井软岩CT分析[J].煤炭学报,2016,41(2):345-351.
    [16] 郭东明,何天宇,杨仁树,等.裂隙岩石试件超细水泥注浆效果CT分析[J].采矿与安全工程学报,2017, 34(5):987-992.
    [17] Adam Bezuijen. Compensation grouting in sand Experiments, field fxperiences and mechanisms[D]. Delft: Delft University of Technology, 2010: 35-38.
    [18] Irupati Bolisetti. Experimental and numerical investigations of chemical grouting in heterogeneous porous media [D]. Ontario: University of Windsor, 2005: 45-47.
    [19] 李术才,张霄.地下工程涌突水注浆止水浆液扩散机制和封堵方法研究[J].岩石力学与工程学报,2011, 30(12):2378-2395.
    [20] 王档良.多孔介质动水化学注浆机理研究[D].徐州:中国矿业大学,2011.
  • 期刊类型引用(1)

    1. 黄辉,徐阳,甘黎嘉,何淼. 劈裂注浆加固方案及效果. 矿业工程研究. 2021(03): 24-28 . 百度学术

    其他类型引用(4)

计量
  • 文章访问数:  22
  • HTML全文浏览量:  0
  • PDF下载量:  0
  • 被引次数: 5
出版历程
  • 发布日期:  2020-11-19

目录

    /

    返回文章
    返回