Failure analysis and control technology of intersections of large-scale variable cross-section roadways in deep soft rock

被引:0
|
作者
Shengrong Xie
Yiyi Wu
Dongdong Chen
Ruipeng Liu
Xintao Han
Qiucheng Ye
机构
[1] China University of Mining and Technology,School of Energy and Mining Engineering
[2] Beijing,undefined
[3] Mine Safety Technology Branch of China Coal Research Institute,undefined
关键词
Deep soft rock; Variable cross-section; Roadway intersection; Bolting-grouting integration; New grouting material;
D O I
暂无
中图分类号
学科分类号
摘要
In deep underground mining, achieving stable support for roadways along with long service life is critical and the complex geological environment at such depths frequently presents a major challenge. Owing to the coupling action of multiple factors such as deep high stress, adjacent faults, cross-layer design, weak lithology, broken surrounding rock, variable cross-sections, wide sections up to 9.9 m, and clusters of nearby chambers, there was severe deformation and breakdown in the No. 10 intersection of the roadway of large-scale variable cross-section at the − 760 m level in a coal mine. As there are insufficient examples in engineering methods pertaining to the geological environment described above, the numerical calculation model was oversimplified and support theory underdeveloped; therefore, it is imperative to develop an effective support system for the stability and sustenance of deep roadways. In this study, a quantitative analysis of the geological environment of the roadway through field observations, borehole-scoping, and ground stress testing is carried out to establish the FLAC 3D variable cross-section crossing roadway model. This model is combined with the strain softening constitutive (surrounding rock) and Mohr–Coulomb constitutive (other deep rock formations) models to construct a compression arch mechanical model for deep soft rock, based on the quadratic parabolic Mohr criterion. An integrated control technology of bolting and grouting that is mainly composed of a high-strength hollow grouting cable bolt equipped with modified cement grouting materials and a high-elongation cable bolt is developed by analyzing the strengthening properties of the surrounding rock before and after bolting, based on the Heok-Brown criterion. As a result of on-site practice, the following conclusions are drawn: (1) The plastic zone of the roof of the cross roadway is approximately 6 m deep in this environment, the tectonic stress is nearly 30 MPa, and the surrounding rock is severely fractured. (2) The deformation of the roadway progressively increases from small to large cross-sections, almost doubling at the largest cross-section. The plastic zone is concentrated at the top plate and shoulder and decreases progressively from the two sides to the bottom corner. The range of stress concentration at the sides of the intersection roadway close to the passageway is wider and higher. (3) The 7 m-thick reinforced compression arch constructed under the strengthening support scheme has a bearing capacity enhanced by 1.8 to 2.3 times and increase in thickness of the bearing structure by 1.76 times as compared to the original scheme. (4) The increase in the mechanical parameters c and φ of the surrounding rock after anchoring causes a significant increase in σt; the pulling force of the cable bolt beneath the new grouting material is more than twice that of ordinary cement grout, and according to the test, the supporting stress field shows that the 7.24 m surrounding rock is compacted and strengthened in addition to providing a strong foundation for the bolt (cable). On-site monitoring shows that the 60-days convergence is less than 30 mm, indicating that the stability control of the roadway is successful.
引用
下载
收藏
相关论文
共 50 条
  • [1] Failure analysis and control technology of intersections of large-scale variable cross-section roadways in deep soft rock
    Xie, Shengrong
    Wu, Yiyi
    Chen, Dongdong
    Liu, Ruipeng
    Han, Xintao
    Ye, Qiucheng
    INTERNATIONAL JOURNAL OF COAL SCIENCE & TECHNOLOGY, 2022, 9 (01)
  • [2] Deformation Failure Analysis and Stability Control Technology of Large Section Soft Rock Chamber in Deep Coal Mine
    An, Changhui
    Zhang, Guibin
    Liu, Zhida
    Zhao, Kai
    Guo, Wei
    Liu, Hailin
    ADVANCES IN CIVIL AND INDUSTRIAL ENGINEERING, PTS 1-4, 2013, 353-356 : 1035 - +
  • [3] Study on the Rapid Excavation Technology of Deep Large Cross-section Rock Tunnel
    Liu Xinjie
    Kong Dezhong
    Song Gaofeng
    MINING 2014: TAISHAN ACADEMIC FORUM - PROJECT ON MINE DISASTER PREVENTION AND CONTROL, 2014, : 133 - 137
  • [4] Disturbing effect of excavation in deep soft rock roadways and control technology
    Meng Q.
    Sun W.
    Han L.
    Nie J.
    Zhang J.
    Wang J.
    Caikuang yu Anquan Gongcheng Xuebao/Journal of Mining and Safety Engineering, 2021, 38 (03): : 496 - 506
  • [5] Analysis of deformation control mechanism of prestressed anchor on jointed soft rock in large cross-section tunnel
    Li, Gan
    Hu, Yu
    Tian, Si-ming
    Weibin, Ma
    Huang, Hai-long
    BULLETIN OF ENGINEERING GEOLOGY AND THE ENVIRONMENT, 2021, 80 (12) : 9089 - 9103
  • [6] Analysis of deformation control mechanism of prestressed anchor on jointed soft rock in large cross-section tunnel
    Gan Li
    Yu Hu
    Si-ming Tian
    Ma weibin
    Hai-long Huang
    Bulletin of Engineering Geology and the Environment, 2021, 80 : 9089 - 9103
  • [7] Failure mechanism and control technology of deep soft-rock roadways: Numerical simulation and field study
    Meng, Ningkang
    Bai, Jianbiao
    Yoo, Chungsik
    UNDERGROUND SPACE, 2023, 12 : 1 - 17
  • [8] The Failure Law and Control Technology of Large-Section Roadways in Gently Inclined Soft Coal Seams
    Ma, Qi
    Zhang, Yidong
    Zhang, Xingrun
    Li, Zexin
    Song, Guangyuan
    Cheng, Jingyi
    Gao, Kuidong
    PROCESSES, 2022, 10 (10)
  • [9] A Study of the Large Deformation Mechanism and Control Techniques for Deep Soft Rock Roadways
    Yang, Xiaojie
    Wang, Eryu
    Wang, Yajun
    Gao, Yubing
    Wang, Pu
    SUSTAINABILITY, 2018, 10 (04)
  • [10] Mechanism analysis and control technology of surrounding rock failure in deep soft rock roadway
    Zhao, ChengXing
    Li, YingMing
    Liu, Gang
    Meng, Xiangrui
    ENGINEERING FAILURE ANALYSIS, 2020, 115 (115)