Rock and Soil Mechanics ›› 2020, Vol. 41 ›› Issue (12): 4078-4086.doi: 10.16285/j.rsm.2020.0441

• Geotechnical Engineering • Previous Articles     Next Articles

Evolution characteristics of mining-induced stress partition of roadway surrounding rock on working face of deep island

CHENG Li-xing1, 2, 3, JIANG Peng-fei2, 3, 4, YANG Jian-wei1, 2, 3, ZHU Yang-tao5, ZHENG Yang-fa2, 3, ZHANG Zhen2, 3, 4, LI Bing-bing5   

  1. 1. School of Energy and Mining Engineering, China University of Mining & Technology (Beijing), Beijing 100083, China; 2. Coal Mining and Designing Department, Tiandi Science and Technology Co., Ltd., Beijing 100013, China; 3. Coal Ming Research Institute Co., Ltd of CCTEG, Beijing 100013, China; 4. State Key Laboratory of Coal Mining and Clean Utilization, China Coal Research Institute, Beijing 100013, China; 5. Fuyang Mining Company Limited, China Coal Xinji Energy, Fuyang, Anhui 236153, China
  • Received:2020-04-16 Revised:2020-06-14 Online:2020-12-11 Published:2021-01-18
  • Supported by:
    This work was supported by the National Key R&D Program of China(2017YFC0603003), the Young Scholars of National Natural Science Foundation of China(51704160) and the General Program of National Natural Science Foundation of China(51774186).

Abstract: Aiming at large deformation of roadway on working face of deep island mining, the dynamic evolution law of the stress in roadway surrounding rock and goaf are studied by means of field measurement, and the evolution characteristics of deformation and failure of surrounding rock are analyzed. The results show that the stress evolution and deformation failure of surrounding rock on working face of deep island mining have obvious stage characteristics, when the distance from the working face is more than 250 m, the surrounding rock of the roadway is not affected by mining, so the stress of surrounding rock changes little, and the deformation is mainly concentrated in floor and coal pillar. The stress of the supporting structure is increased obviously in the range of 100?250 m in front of the working face, the shallow surrounding rock of the roadway is broken, and the coal pillar is squeezed and deformed, which causes the roadway to appear the obvious asymmetric deformation and failure. In the range of 100 m in front of the working face, the stage of strong mining influence occurs, especially in the range of 20?22 m in front of the working face, the vertical stress and space principal stress of the surrounding rock change more significantly, the roof and floor moving closer and the both sides of roadway deformation more prominent, which make the surrounding rock of the roadway shows obvious large deformation and failure characteristics. According to the characteristics of stress zoning in goaf, the dynamic evolution process of the covering rock structure is analyzed. Combined with the evolution characteristics of stress and deformation, the reform suggestions of roadway support are proposed to provide some guidance for the control technology of roadway surrounding rock in deep mine.

Key words: coal mines with depth more than 1 000 m, overlying strata spatial structure, large deformation, stress evolution, island working face

CLC Number: 

  • TU457
[1] ZHOU Bo-han, ZHANG Wen-li, WANG Dong, . Numerical study of ball penetrometer for predicting strength of overconsolidated soils [J]. Rock and Soil Mechanics, 2025, 46(4): 1303-1309.
[2] WANG Xue-bin, CHEN Shuang-yin, ZHENG Yi-fang, LIAO Pei-bin, . Lagrangian-discrete element method considering creep shear cracking and its application [J]. Rock and Soil Mechanics, 2025, 46(2): 613-624.
[3] LOU Xu-long, ZHANG Ze-rui, KONG De-qiong, CHEN Xing-chao, ZHU Bin, . Large deformation limit analysis of pipe-soil interaction for heavy pipes in deep water [J]. Rock and Soil Mechanics, 2025, 46(10): 3234-3242.
[4] ZHANG Wei, YAN Fei, WANG Zhao-feng, LI Shao-jun, . Numerical analysis of landslides based on coupling model of material point method and depth integral [J]. Rock and Soil Mechanics, 2024, 45(8): 2515-2526.
[5] MA Deng-hui, HAN Xun, CAI Zheng-yin, GUAN Yun-fei, . Numerical analysis of soil pressure distribution law on pile shaft of displacement pile [J]. Rock and Soil Mechanics, 2024, 45(6): 1863-1872.
[6] CHEN Ding, HUANG Wen-xiong, HUANG Dan. A frictional contact algorithm in smoothed particle method with application in large deformation of soils [J]. Rock and Soil Mechanics, 2024, 45(3): 885-894.
[7] YANG Jun-sheng, YANG Xi-feng, FANG Xing-hua, XIE Yi-peng, LIU Wei-long, ILYAS Ahbanouch, . Characteristics of large deformation in tunnel surrounding within inclined thin-layered carbonaceous slate and its countermeasures against unloading failure [J]. Rock and Soil Mechanics, 2024, 45(12): 3728-3737.
[8] WANG Zu-le, KONG De-qiong, DU Yue-ming, ZHU Bin, . Extension and validation of sequential limit analysis for geotechnical problems [J]. Rock and Soil Mechanics, 2023, 44(12): 3531-3540.
[9] KANG Yong-shui, GENG Zhi, LIU Quan-sheng, LIU Bin, ZHU Yuan-guang, . Research progress on support technology and methods for soft rock with large deformation hazards in China [J]. Rock and Soil Mechanics, 2022, 43(8): 2035-2059.
[10] WANG Xing-kai, XIA Cai-chu, ZHU Zhe-ming, XIE Wen-bing, SONG Lei-bo, HAN Guan-sheng, . Long-term creep law and constitutive model of extremely soft coal rock subjected to single-stage load [J]. Rock and Soil Mechanics, 2021, 42(8): 2078-2088.
[11] ZHU Chun, HE Man-chao, ZHANG Xiao-hu, TAO Zhi-gang, YIN Qian, LI Li-feng, . Nonlinear mechanical model of constant resistance and large deformation bolt and influence parameters analysis of constant resistance behavior [J]. Rock and Soil Mechanics, 2021, 42(7): 1911-1924.
[12] DONG Qing, ZHOU Zheng-hua, SU Jie, LI Xiao-jun, HAO Bing, . A constitutive model considering post-liquefaction deformation based on the logarithmic skeleton curve [J]. Rock and Soil Mechanics, 2021, 42(7): 1903-1910.
[13] LEI Sheng-xiang , ZHAO Wei. Study on mechanism of circumferential yielding support for soft rock tunnel with large deformation [J]. Rock and Soil Mechanics, 2020, 41(3): 1039-1047.
[14] ZHANG Chuan-qing, LÜ Hao-an, LIU Xiao-yan, ZHOU Hui, GAO Yang, YAN Dong-ming, . Mechanism research of a new constant resistance yielding device for tunnels [J]. Rock and Soil Mechanics, 2020, 41(12): 4045-4053.
[15] LEI Jiang, CHEN Wei-zhong, LI Fan-fan, YU Hong-dan, MA Yong-shang, XIE Hua-dong, WANG Fu-gang, . Mechanical properties of surrounding rock in diversion tunnel of water diversion project from Hongyan River to Shitou River [J]. Rock and Soil Mechanics, 2019, 40(9): 3435-3446.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!