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LYU Yuguang, LYU Wenbin, XIAO Qinghua, WANG Yongbao, XIA Yujun, ZHANG Yongqiang, WU Su. Engineering characteristics and control technology of soft rock deterioration effect based on water inducement[J]. Safety in Coal Mines, 2021, 52(6): 109-116.
Citation: LYU Yuguang, LYU Wenbin, XIAO Qinghua, WANG Yongbao, XIA Yujun, ZHANG Yongqiang, WU Su. Engineering characteristics and control technology of soft rock deterioration effect based on water inducement[J]. Safety in Coal Mines, 2021, 52(6): 109-116.

Engineering characteristics and control technology of soft rock deterioration effect based on water inducement

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  • Published Date: June 19, 2021
  • In order to solve the technical problem of soft rock engineering deterioration with expansive water-rich in Inner Mongolia Shanghaimiao Mining Co., Ltd., the experiment of the influence of water content on the mechanical properties of rock was carried out. It is found that the physical and mechanical properties of rock are the internal cause of engineering deterioration, while water is the external cause. Based on this, the concepts of “soft water treatment first” and “large water prevention and control small water management” are proposed, some technical measures are taken, such as drainage and mining, bottom arch water-proof, funnel water-connecting, deep-digging water nest, wide-spread awning, hose diversion, centralized drainage, concrete shotcrete sealing, etc. The engineering practice shows that the convergence rate of roadway section decreases from 40.752% to 10.673%, the recovery efficiency increases from 81,000 t/mon to 463,000 t/mon, and the tunneling efficiency increases from 190.6 m/month to 520.3 m/month.
  • [1]
    何满潮,景海河,孙晓明.软岩工程地质力学研究进展[J].工程地质学报,2000,8(1):46-62.

    HE Manchao, JING Haihe, SUN Xiaoming. Research progress of soft rock engineering geomechanics in China coal mines[J]. Journal of Engineering Geology, 2000, 8(1): 46-62.
    [2]
    任建喜,杨渴.软弱围岩巷道松动圈演化规律及支护技术研究[J].煤炭工程,2018,50(1):77-80.

    REN Jianxi, YANG Ke. Research on evolution law of loose circle in weak surrounding rock roadway and its support technology[J]. Coal Engineering, 2018, 50(1): 77-80.
    [3]
    陈玉萍,张生华.软岩巷道二次支护最佳时间的研究[J].矿山压力与顶板管理,2003(2):56-58.

    CHEN Yuping, ZHANG Shenghua. Research of reasonable time of twice support in soft roadway[J]. Gound Pressure and Strata Control, 2003(2): 56-58.
    [4]
    王进学,杨胜利,陈忠辉.膨胀软岩巷道底鼓机理与耦合支护技术研究[J].矿山金属,2008(12):44-52.

    WANG Jinxue, YANG Shengli, CHEN Zhonghui. Study on the floor heave mechanism of roadway in swelling soft rock and its coupling support technology[J]. Metal Mine, 2008(12): 44-52.
    [5]
    康红普,王金华,林健.高预应力强力支护系统及其在深部巷道中的应用[J].煤炭学报,2007,32(12):1233-1238.

    KANG Hongpu, WANG Jinhua, LIN Jian. High pretension stress and intensive bolting system and its application in deep roadways[J]. Journal of China Coal Socience, 2007, 32(12): 1233-1238.
    [6]
    秦广鹏,蒋金泉,孙森,等.大变形软岩顶底板煤巷锚网索联合支护研究[J].采矿与安全工程学报,2012, 29(2):209-214.

    QIN Guangpeng, JIANG Jinquan, SUN Sen, et al. Bolt-cable and wire-netting combined support research of large defor-mation coal entry with soft roof and floor[J]. Journal of Mining and Safety Engineering, 2012, 29(2): 209-214.
    [7]
    高延法,王波,王军,等.深井软岩巷道钢管混凝土支护结构性能试验及应用[J].岩石力学与工程学报,2010,29(1):2604-2609.

    GAO Yanfa, WANG Bo, WANG Jun, et al. Test on structural property and application of concrete-filled steel tube support of deep mine and soft rock roadway[J]. Chinese Journal of Rock Mechanics and Engineering, 2010, 29(1): 2604-2609.
    [8]
    刘泉声,罗慈友,彭星新,等.软岩现场流变试验及非线性分数阶蠕变模型[J].煤炭学报,2020,45(4):1348-1356.

    LIU Quansheng, LUO Ciyou, PENG Xingxin, et al. Research on field rheological test and nonlinear fractional derivative creep model of weak rock mass[J]. Journal of China Coal Society, 2020, 45(4): 1348-1356.
    [9]
    许兴亮,张农.富水条件下软岩变形特征与过程控制研究[J].煤炭学报,2007,36(3):288-302.XU Xingliang, ZHANG Nong. Study of control process deformation behavior of soft rock drift under rich water condition[J]. Journal of China Coal Society, 2007, 36(3): 288-302.
    [10]
    刘晓明,赵明华,苏永华.软岩崩解分形机制的数学模拟[J].岩土力学,2008(8):2043-2069.

    LIU Xiaoming, ZHAO Minghua, SU Yonghua. Mathematical simulation of fractal mechanism for slaking of soft rock[J]. Rock and Soil Mechanics, 2008(8): 2043-2069.
    [11]
    王永吉.西部弱胶结软岩力学特性试验研究[D].青岛:山东科技大学,2013:23-35.
    [12]
    宋朝阳,纪洪广,刘志强,等.饱和水弱胶结砂岩剪切断裂面形貌特征及破坏机理[J].煤炭学报,2018,43(9):2444-2451.

    SONG Zhaoyang, JI Hongguang, LIU Zhiqiang, et al. Morphology and failure mechanism of the shear fracture surface of weakly cemented sandstone with water saturation[J]. Journal of China Coal Society, 2018, 43(9): 2444-2451.
    [13]
    刘镇,周翠英,朱凤贤,等.软岩饱水软化过程微观结构演化的临界判据[J].岩土力学,2011,32(3):661.

    LIU Zhen, ZHOU Cuiying, ZHU Fengxian, et al. Critical criterion for microstructure evolution of soft rocks in softening process[J]. Rock and Soil Mechanics, 2011, 32(3): 661.
    [14]
    周翠英,朱凤贤,张磊.软岩饱水试验与软化临界现象研究[J].岩土力学,2010,31(6):1709-1715.

    ZHOU Cuiying, ZHU Fengxian, ZHANG Lei. Research on saturation test and softening critical phenomena of soft rocks[J]. Rock and Soil Mechanics, 2010, 31(6): 1709-1715.
    [15]
    魏晓刚,麻凤海,刘书贤,等.含水泥岩蠕变损伤特性试验研究[J].河南理工大学学报(自然科学版),2016,35(5):725-731.

    WEI Xiaogang, MA Fenghai, LIU Shuxian, et al. Experimental analysis of creep damage of water mudstone[J]. Journal of Henan Polytechnic University(Natural Science), 2016, 35(5): 725-731.
    [16]
    张向东,傅强.泥岩三轴蠕变实验研究[J].应用力学学报,2012,29(2):154-159.

    ZHANG Xiangdong, FU Qiang. Study on triaxial creep test of mudstone[J]. Chinese Journal of Applied Mechanics, 2012, 29(2): 154-159.
    [17]
    黄小兰,杨春和,刘建军,等.不同含水情况下的泥岩蠕变试验及其对油田套损影响研究[J].岩石力学与工程学报,2008,27(S2):3477-3482.

    HUANG Xiaolan, YANG Chunhe, LIU Jianjun, et al. Experimental study on mudstone creep behavior under different wa ter contents and its effect on casing damage[J]. Chinese Journal of Rock Mechanics and Engineering, 2008, 27(S2): 3477-3482.
    [18]
    周翠英,彭泽英,尚伟,等.论岩土工程中水-岩相互作用研究的焦点问题-特殊软岩的力学变异性[J].岩土力学,2002,23(1):124-128.

    ZHOU Cuiying, PENG Zeying, SHANG Wei, et al. On the key problem of the water-rock interaction in geoengineering: mechanical variability of special weak rocks and some development trends[J]. Rock and Soil Mechanics, 2002, 23(1): 124-128.
    [19]
    吕玉广,肖庆华,程久龙.弱富水软岩水-沙混合型突水机制与防治技术研究-以上海庙矿区为例[J].煤炭学报,2019,44(10):3154-3163.

    LYU Yuguang, XIAO Qinghua, CHENG Jiulong. Mechanism and prevention of water-sand inrush in soft rock with weakly abundant water: a case study in Shanghai temple mining area[J]. Journal of China Coal Society, 2019, 44(10): 3154-3163.
    [20]
    陆家梁.软岩巷道支护技术[M].长春:吉林科学出版社,1995:162-164.
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