• 全国中文核心期刊
  • 中国科技核心期刊
  • 美国工程索引(EI)收录期刊
  • Scopus数据库收录期刊
CHEN Jian-gong, HE Hu, ZHANG Yong-xing. Dynamic and static analysis of mechanism of loosen zone in surrounding rock of tunnels[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(12): 1964-1968.
Citation: CHEN Jian-gong, HE Hu, ZHANG Yong-xing. Dynamic and static analysis of mechanism of loosen zone in surrounding rock of tunnels[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(12): 1964-1968.

Dynamic and static analysis of mechanism of loosen zone in surrounding rock of tunnels

More Information
  • Published Date: December 14, 2011
  • Considering the dynamic and static actions on surrounding rock during excavation process, the loosen zone is divided into two parts, broken zone and plastic softening zone. The transient unloading in surrounding rock will induce dynamic action on the rock near cavern periphery, leading to tension crack zone. Then, under the static action with the original stress in rock, the tension crack zone tends to be broken zone because of tension failure and shear failure. Under the stactic action with the original stress in rock, the deformatiom increases and the plastic softening zone is formed. Based on the elastodynamics theory, the stress redistribution and displacement field in surrounding rock induced by excavation are determined. A method to detemine the radius of the broken zone is put forward. On the basis of stress distribution in broken zone and the residual strength theory, the supporting force that the broken zone acts on the plastic softening zone is deduced. By means of the formula for calculating the stress in the plastic zone, an equation to calculate the radius of looen zone is deduced. The calculated results are in conformity the in-situ monitoring with data.
  • [1]
    董方庭 , 宋宏伟 , 郭志宏 . 巷道围岩松动圈支护理论 [J]. 煤炭学报 , 1994, 19 (1): 31 – 32. (DONG Fang-ting, SONG Hong-wei, GUO Zhi-hong. Roadway support theory based on broken rock zone[J]. Journal of China Coal Society, 1994, 19 (1): 31 – 32. (in Chinese))
    [2]
    李华晔 . 地下洞室围岩稳定性分析 [M]. 北京 : 中国水利水电出版社 , 1999: 69 – 58. (LI Hua-ye. Stability analysis of under-ground opening[M]. Beijing: China Water Power Press, 1999: 69 – 88. (in Chinese))
    [3]
    孙有为 , 薄景山 , 孙 超 . 地下洞室松动圈的研究方法与现状 [J]. 防灾科技学院学报 , 2009, 11 (2): 13 – 17. (SUN You-wei, BO Jing-shan, SUN Chao. The status quo and methods of broken zone of underground cavity[J]. J of Institute of Disaster-Prevention Science and Technology, 2009, 11 (2): 13 – 17. (in Chinese))
    [4]
    刘 刚 , 宋宏伟 . 煤巷围岩松动圈规律研究 [J]. 煤炭学报 , 2002, 27( 1): 31 – 35. (LIU Gang, SONG Hong-wei. Study on the distribution law of the broken rock zone around rectangular-shape coal roadway[J]. Journal of China Coal Society, 1994, 27 (1): 31 – 35. (in Chinese))
    [5]
    王社欣 , 李 冲 . 深部矿井软岩回采巷道围岩松动圈厚度的确定与控制 [J]. 矿业研究与开发 , 2009, 29 (1): 16 – 17. (WANG She-xin, LI Chong. Thickness determination and controlling of loose surrounding rock zone of soft-rock roadway in deep mine[J]. Mining R & D, 2009, 29 (1): 16 – 17. (in Chinese))
    [6]
    靖洪文 , 傅国彬 , 郭志宏 . 深井巷道围岩松动圈影响因素实测分析及控制技术研究 [J]. 岩石力学与工程学报 , 1999, 18 (1): 70 – 74. (JING Hong-wen, FU Guo-bin, GUO Zhi-hong. Measurement and ananlysis of influential factors of broken zone of deep roadways and study on its control technique[J]. Chinese Journal of Rock Mechanics and Engineering, 1999, 18 (1): 70 – 74. (in Chinese))
    [7]
    宋红伟 , 王 闯 , 贾颖绚 . 用地质雷达测试围岩松动圈的原理与实践 [J]. 中国矿业大学学报 , 2002, 31 (4): 370 – 372. (SONG Hong-wei, WANG Chuang, JIA Ying-xuan. Principle of measuring broken rock zone around underground roadway with gpr and its application[J]. Journal of China University of Mining &Technology, 2002, 31 (4): 370 – 372. (in Chinese))
    [8]
    田昌贵 . 声波测试技术在丰山铜矿的应用 [J]. 矿业研究与开发 , 2002, 22 (5): 45 – 47. (TIAN Chang-gui. Application of acoustic testing technique in fengshan copper mine[J]. Mining R & D, 2002, 22 (5): 45 – 47. (in Chinese))
    [9]
    张平松 , 刘盛东 , 吴荣新 . 峒室围岩松动圈震波探测技术与应用 [J]. 煤田地质与勘探 , 2003, 31 (1): 54 – 56. (ZHANG Ping-song, LIU Sheng-dong, WU Rong-xing. The application of seismic technique in broken zone detecting[J]. Coal Geology & Exploration, 2003, 31 (1): 54 – 56. (in Chinese))
    [10]
    李顺才 , 卓士创 , 谢卫红 . 圆形巷道围岩应力场的自然边界元法 [J]. 煤炭学报 , 2004(6): 672 – 675. (LI Shun-cai, ZHUO Shi-chuang, XIE Wei-hong. Natural boundary element method for the stress field of circular roadways surrounding rock[J]. Joumal of China Coal Society, 2004(6): 672 – 675. (in Chinese))
    [11]
    李术才 , 王汉鹏 , 钱七虎 , 等 . 深部巷道围岩分区破裂化现象现场监测研究 [J]. 岩石力学与工程学报 , 2008, 27 (8): 1545 – 1553. (LI Shu-cai, WANG Han-peng, QIAN Qi-hu, et al. In-situ monitoring research on zonal disintegration of surrounding rock mass in deep mine roadways[J]. Chinese Journal of Rock Mechanics and Engineering, 2008, 27 (8): 1545 – 1553. (in Chinese))
  • Related Articles

    [1]LIN Yifeng, ZHU Junlin, YU Jian, HUANG Maosong, XIAO Jiandong. Spherical cavity expansion-based method for cone factor considering nonlinear characteristics of clay[J]. Chinese Journal of Geotechnical Engineering, 2024, 46(S2): 67-71. DOI: 10.11779/CJGE2024S20020
    [2]Soil liquefaction evaluation method based on soil behavior type classification chart and its indices from cone penetration testing[J]. Chinese Journal of Geotechnical Engineering. DOI: 10.11779/CJGE20240293
    [3]TAN Hao, JI Hong-guang, ZENG Zhi-yuan, LIU Zhi-qiang. Optimal drilling pressure of cone-tipped cutters based on characteristic size of hard and brittle rocks[J]. Chinese Journal of Geotechnical Engineering, 2020, 42(4): 782-789. DOI: 10.11779/CJGE202004023
    [4]LIU Song-yu, ZOU Hai-feng, CAI Guo-jun, ZHU Liu-wen, DU Yu. Application of CPTU-based soil classification methods in Hong Kong-Zhuhai-Macao Bridge[J]. Chinese Journal of Geotechnical Engineering, 2017, 39(z2): 1-4. DOI: 10.11779/CJGE2017S2001
    [5]LIU Jin-li, QIU Ren-dong, QIU Ming-bing, GAO Wen-sheng. Behaviors of shaft resistance and tip resistance of piles under different conditions and conceptualization and application of distribution of shaft resistance[J]. Chinese Journal of Geotechnical Engineering, 2014, 36(11): 1953-1970. DOI: 10.11779/CJGE201411001
    [6]ZOU Hai-feng, LIU Song-yu, CAI Guo-jun, DU Guang-yin. Evaluation of liquefaction potential of saturated sands based on piezocome penetration tests on resistivity[J]. Chinese Journal of Geotechnical Engineering, 2013, 35(7): 1280-1288.
    [7]TANG Jun-wei, ZHAO Chun-feng, ZHAO Cheng, LIU Kun, LIAO Qian-xu. Experimental study on influence of pile-tip soil on friction resistance[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(sup2): 454-459.
    [8]WANG Wei-dong, WU Jiang-bin, WANG Xiang-jun, ZHAO Chun-feng, WANG Jian-hua. Values of side and tip resistances of piles in Shanghai area[J]. Chinese Journal of Geotechnical Engineering, 2011, 33(sup2): 24-31.
    [9]LIU Songyu, CAI Guojun, TONG Liyuan, DU Guangyin. On preconsolidation pressure of clays from piezocone tests[J]. Chinese Journal of Geotechnical Engineering, 2007, 29(4): 490-495.
    [10]Zhang Chenghou, Shi Jian, Dai Jiqun. The Application of Piezocone Tests in China[J]. Chinese Journal of Geotechnical Engineering, 1997, 19(1): 52-59.

Catalog

    Article views (1255) PDF downloads (779) Cited by()
    Related

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return