2021 Vol. 48, No. 2
Article Contents

ZHAO Yu, ZHENG Hong, CAO Han, LIN Fei, WANG Xubin, HE Moli. A study of grouting mechanism of high solid phase segregation grout in fully weathered granite[J]. Hydrogeology & Engineering Geology, 2021, 48(2): 78-88. doi: 10.16030/j.cnki.issn.1000-3665.202006023
Citation: ZHAO Yu, ZHENG Hong, CAO Han, LIN Fei, WANG Xubin, HE Moli. A study of grouting mechanism of high solid phase segregation grout in fully weathered granite[J]. Hydrogeology & Engineering Geology, 2021, 48(2): 78-88. doi: 10.16030/j.cnki.issn.1000-3665.202006023

A study of grouting mechanism of high solid phase segregation grout in fully weathered granite

More Information
  • The stability of completely weathered granite is poor and it is easy to disintegrate when exposed to water. In engineering, the grouting effect of using conventional materials for seepage prevention and reinforcement in this rock is poor. In view of this situation, based on the grouting project of the Mangshan reservoir in Chenzhou of Hunan Province, the simulated grouting experiment is carried out by the independent design of the laboratory simulation test device. The diffusion of slurry in the whole grouting process is simulated. Uniaxial compression, shear strength and permeability tests are conducted on the samples taken at different grouting pressures and at different locations, and the whole stone body under different grouting pressures is sampled and observed to examine the anti-seepage reinforcement effect and the slurry diffusion mode of the high-solid phase segregation slurry, which is composed of fully weathered granite particles, in the fully weathered granite. The results show that the slurry has undergone three stages of permeation and diffusion, compaction and compression, and cleavage and expansion in the process of fully weathered granite formation diffusion, and the high solid phase segregation grout with fully weathered granites as the main body has a remarkable effect on the grouting of fully weathered granites. With the increasing grouting pressure, the uniaxial compressive strength is significantly increased to 3.25-13.67 times the original soil mass, and the shear strength is increased to 1.63-2.69 times the original soil mass under different normal pressures. The permeability decreases from 10−4 cm/s to 10−5 cm/s or 10−-6 cm/s. Therefore, the high solid phase segregation slurry has a significant anti-seepage effect on the fully weathered granite.

  • 加载中
  • [1] 吴能森. 花岗岩残积土的分类研究[J]. 岩土力学,2006,27(12):2299 − 2304. [WU Nengsen. Study on classification of granite residual soils[J]. Rock and Soil Mechanics,2006,27(12):2299 − 2304. (in Chinese with English abstract) doi: 10.3969/j.issn.1000-7598.2006.12.041

    CrossRef Google Scholar

    [2] 陈爱云. 黑云母花岗岩全风化层工程地质特性研究[J]. 铁道工程学报,2016,33(6):22 − 25. [CHEN Aiyun. Research on the engineering geology characteristics of completely weathering layer of biotite granite[J]. Journal of Railway Engineering Society,2016,33(6):22 − 25. (in Chinese with English abstract) doi: 10.3969/j.issn.1006-2106.2016.06.005

    CrossRef Google Scholar

    [3] 陈洪江, 崔冠英. 花岗岩残积土物理力学指标的概型分布检验[J]. 华中科技大学学报(自然科学版),2001,29(5):92 − 94. [CHEN Hongjiang, CUI Guanying. Probability type testing of the distribution on the granite eluvial soil mechanical parameters[J]. Journal of Huazhong University of Science and Technology. Nature Science,2001,29(5):92 − 94. (in Chinese with English abstract)

    Google Scholar

    [4] 苗胜军, 杨志军, 龙超, 等. 混合花岗岩加载细观力学特性及破裂演化规律[J]. 江苏大学学报(自然科学版),2012,33(4):469 − 473. [MIAO Shengjun, YANG Zhijun, LONG Chao, et al. Micro-mechanical characteristics and cracks revolution laws of migmatitic granite under different loading conditions[J]. Journal of Jiangsu University (Natural Science Edition),2012,33(4):469 − 473. (in Chinese with English abstract)

    Google Scholar

    [5] 李建新, 陈秋南, 赵柳, 等. 南岳地区全风化花岗岩崩解特性试验研究[J]. 湖南科技大学学报(自然科学版),2015,30(4):59 − 63. [LI Jianxin, CHEN Qiunan, ZHAO Liu, et al. Experimental research on disintegration characteristics of weathered granite in Nanyue[J]. Journal of Hunan University of Science & Technology (Natural Science Editon),2015,30(4):59 − 63. (in Chinese with English abstract)

    Google Scholar

    [6] 张素敏, 朱永全, 高炎, 等. 全风化花岗岩流变特性试验研究[J]. 地下空间与工程学报,2016,12(4):904 − 911. [ZHANG Sumin, ZHU Yongquan, GAO Yan, et al. Experimental investigation on rheological properties of completely weathered granite[J]. Chinese Journal of Underground Space and Engineering,2016,12(4):904 − 911. (in Chinese with English abstract)

    Google Scholar

    [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.

    Google Scholar

    The groups of the “Geotechnical grouting theory and engineering examples”. Geotechnical grouting theory and engineering examples[M]. Beijing: Science Press, 2001.(in Chinese)

    Google Scholar

    [8] 罗平平. 裂隙岩体可灌性及灌浆数值模拟研究[D]. 南京: 河海大学, 2006.

    Google Scholar

    LUO Pingping. Numerical simulation study on the irrigability and grouting in fractured rock mass[D]. Nanjing: Hohai University, 2006.(in Chinese with English abstract)

    Google Scholar

    [9] 李术才, 张伟杰, 张庆松, 等. 富水断裂带优势劈裂注浆机制及注浆控制方法研究[J]. 岩土力学,2014,35(3):744 − 752. [LI Shucai, ZHANG Weijie, ZHANG Qingsong, et al. Research on advantage-fracture grouting mechanism and controlled grouting method in water-rich fault zone[J]. Rock and Soil Mechanics,2014,35(3):744 − 752. (in Chinese with English abstract)

    Google Scholar

    [10] 齐延海, 李术才, 李召峰, 等. 全风化花岗岩富水地层注浆治理研究与应用[J]. 中南大学学报(自然科学版),2019,50(3):694 − 703. [QI Yanhai, LI Shucai, LI Zhaofeng, et al. Study and application of grouting governing of completely weathered granite in water-rich stratum[J]. Journal of Central South University (Science and Technology),2019,50(3):694 − 703. (in Chinese) doi: 10.11817/j.issn.1672-7207.2019.03.024

    CrossRef Google Scholar

    [11] 王旭斌, 郑洪, 林飞, 等. 全风化花岗岩防渗关键技术研究与应用[J]. 水利规划与设计,2019(4):149 − 153. [WANG Xubin, ZHENG Hong, LIN Fei, et al. Research and application of the key technology of seepage control of fully weathered granite[J]. Water Resources Planning and Design,2019(4):149 − 153. (in Chinese)

    Google Scholar

    [12] 王凯, 李术才, 杨磊, 等. 全风化花岗岩加固特性注浆模拟试验[J]. 天津大学学报(自然科学与工程技术版),2017,50(11):1199 − 1209. [WANG Kai, LI Shucai, YANG Lei, et al. Grouting simulation experiment on reinforcement characteristics of completely decomposed granite[J]. Journal of Tianjin University (Science and Technology),2017,50(11):1199 − 1209. (in Chinese with English abstract)

    Google Scholar

    [13] 袁敬强, 陈卫忠, 黄世武, 等. 全风化花岗岩注浆加固特性试验研究[J]. 岩石力学与工程学报,2016,35(增刊1):2876 − 2882. [YUAN Jingqiang, CHEN Weizhong, HUANG Shiwu, et al. Experimental study on physico-mechanical properties of grouted completely weathered granite[J]. Chinese Journal of Rock Mechanics and Engineering,2016,35(Sup1):2876 − 2882. (in Chinese with English abstract)

    Google Scholar

    [14] 涂鹏, 王星华. 海底隧道注浆材料强度劣化规律及使用寿命研究[J]. 水文地质工程地质,2011,38(1):65 − 68. [TU Peng, WANG Xinghua. Research on strength degradation law and Service Life of grouting materials in undersea tunnel[J]. Hydrogeology & Engineering Geology,2011,38(1):65 − 68. (in Chinese with English abstract) doi: 10.3969/j.issn.1000-3665.2011.01.012

    CrossRef Google Scholar

    [15] 张健, 李术才, 李召峰, 等. 全风化花岗岩地层单-双液浆加固试验研究[J]. 中南大学学报(自然科学版),2018,49(12):3051 − 3059. [ZHANG Jian, LI Shucai, LI Zhaofeng, et al. Comparative study of reinforcement patterns between single-and double-fluid grouting in fully-weathered granite[J]. Journal of Central South University (Natural Science edition),2018,49(12):3051 − 3059. (in Chinese with English abstract) doi: 10.11817/j.issn.1672-7207.2018.12.019

    CrossRef Google Scholar

    [16] 张贵金, 刘杰, 胡大可, 等. 黏土水泥膏浆流变性能及其对灌浆的影响[J]. 长江科学院院报,2017,34(3):119 − 125. [ZHANG Gguijin, LIU Jie, HU Dake, et al. Rheological Properties of plaster slurry of clay-cement and its influence on grouting engineering[J]. Journal of Changjiang Academy of Sciences,2017,34(3):119 − 125. (in Chinese with English abstract) doi: 10.11988/ckyyb.20160008

    CrossRef Google Scholar

    [17] 中华人民共和国水利部. 土的工程分类标准: GB/T 50145—2007[S]. 北京: 中国计划出版社, 2008.

    Google Scholar

    Ministry of Water Resources, PRC. Engineering classification standard for soils: GB/T 50145—2007[S]. Beijing: China Planning Press, 2008.(in Chinese)

    Google Scholar

    [18] 张贵金, 肖通, 张聪, 等. 松散地层脉动与稳压灌浆室内试验研究[J]. 水文地质工程地质,2016,43(5):87 − 93. [ZHANG Guijin, XIAO Tong, ZHANG Cong, et al. An indoor experimental study of loose soil strata pulsating and regulated filling[J]. Hydrogeology & Engineering Geology,2016,43(5):87 − 93. (in Chinese with English abstract)

    Google Scholar

    [19] 南京水利科学研究院. 土工试验规程: SL 237—1999[S]. 北京: 中国水利水电出版社, 1999.

    Google Scholar

    Nanjing Water Conservancy Research Institute. Code of geotechnical test: SL 237—1999[S]. Beijing: China Water Resources and Hydropower Press, 1999. (in Chinese)

    Google Scholar

    [20] 中华人民共和国水利部. 水利水电工程地质勘察规范: GB 50487—2008[S]. 北京: 中国计划出版社, 2009.

    Google Scholar

    Ministry of Water Resources, PRC. Code for geological survey of water conservancy and hydropower projects: GB 50487—2008[S]. Beijing: China Planning Press, 2009. (in Chinese)

    Google Scholar

    [21] 尚彦军, 王思敬, 岳中琦, 等. 全风化花岗岩孔径分布-颗粒组成-矿物成分变化特征及指标相关性分析[J]. 岩土力学,2004,25(10):1545 − 1550. [SHANG Yanjun, WANG Sijing, YUE Zhongqi, et al. Variation features of pore radius and particle diameter distributions and mineral content of completely decomposed granite and correlation of parameters[J]. Rock and Soil Mechanics,2004,25(10):1545 − 1550. (in Chinese with English abstract) doi: 10.3969/j.issn.1000-7598.2004.10.007

    CrossRef Google Scholar

    [22] 赵柳, 陈秋南, 李建新, 等. 南岳地区全风化花岗岩的微观特性[J]. 湖南工程学院学报(自然科学版),2013,23(4):68 − 72. [ZHAO Liu, CHEN Qiunan, LI Jianxin, et al. Research on micro properties of Nanyue completely decomposed granite[J]. Journal of Hunan Institute of Engineering (Natural Science Edition),2013,23(4):68 − 72. (in Chinese with English abstract)

    Google Scholar

    [23] 李晓鄂, 蔡胜华. 三峡工程坝基花岗岩力学性能的微观分析[J]. 电子显微学报,1995,14(5):379 − 384. [LI Xiaoe, CAI Shenghua. Microscopic analysis of mechanical properties on granite of dam foundation of Three Gorges project[J]. Journal of Chinese Electron Microscopy Society,1995,14(5):379 − 384. (in Chinese)

    Google Scholar

    [24] 邹健, 张忠苗. 考虑压滤效应饱和黏土压密注浆球孔扩张理论[J]. 哈尔滨工业大学学报,2011,43(12):119 − 123. [ZOU Jian, ZHANG Zhongmiao. Spherical cavity expansion theory of compaction grouting in saturated clay considering pressure filtration[J]. Journal of Harbin Institute of Technology,2011,43(12):119 − 123. (in Chinese with English abstract)

    Google Scholar

  • 加载中
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Figures(10)

Tables(3)

Article Metrics

Article views(1097) PDF downloads(138) Cited by(0)

Access History

Other Articles By Authors

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint