Citation: | ZHOU Bo, XU Mengtang, YIN Lei, LI Xin, ZHANG Wang. Research on supporting technology of roadway passing goaf[J]. Safety in Coal Mines, 2021, 52(9): 116-121. |
[1] |
康红普.我国煤矿巷道围岩控制技术发展70年及展望[J].岩石力学与工程学报,2021,40(1):1-30.
KANG Hongpu. Seventy years development and prospects of strata control technologies for coal mine roadways in China[J]. Chinese Journal of Rock Mechanics and Engineering, 2021, 40(1): 1-30.
|
[2] |
康红普,林健,杨景贺,等.松软破碎硐室群围岩应力分布及综合加固技术[J].岩土工程学报,2011,33(5):808-812.
KANG Hongpu, LIN Jian, YANG Jinghe, et al. Stress distribution and synthetic reinforcing technology for chamber group with soft and fractured surrounding rock[J]. Chinese Journal of Geotechnical Engineering, 2011,33(5): 808-812.
|
[3] |
侯朝炯.深部巷道围岩控制的关键技术研究[J].中国矿业大学学报,2017,46(5):970-978.
HOU Chaojiong. Key technology for surrouding rock control in deep roadway[J]. Journal of China University of Ming & Technology, 2017, 46(5): 970-978.
|
[4] |
袁亮, 薛俊华,刘泉声,等.煤矿深部岩巷围岩控制理论与支护技术[J].煤炭学报,2011,36(4):535-543.
YUAN Liang, XUE Junhua, LIU Quansheng, et al. Surrounding rock stability control theory and support technique in deep rock roadway for coal mine[J]. Journal of China Coal Society, 2011, 36(4): 535-543.
|
[5] |
余伟健,高谦,朱川曲.深部软弱围岩叠加拱承载体强度理论研究及应用[J].岩石力学与工程学报,2010, 29(10):2134-2142.
YU Weijian, GAO Qian, ZHU Chuanqu. Study of strength theory and application of overlap arch bearing body for deep soft surrounding rock[J]. Chinese Journal of Rock Mechanics and Engineering, 2010, 29(10): 2134-2142.
|
[6] |
徐佑林,张辉.动压影响下的软岩巷道加固治理技术研究[J].煤炭科学技术,2018,46(1):68-73.
XU Youlin, ZHANG Hui. Research on reinforcement and treatment technology for soft rock roadway under dynamic pressure[J]. Coal Science and Technology, 2018, 46(1): 68-73.
|
[7] |
徐佑林,许猛堂,程利兴.强烈动压影响巷道再造承载拱控制原理与试验研究[J].采矿与安全工程学报,2018,35(6):1135-1141.
XU Youlin, XU Mengtang, CHNEG Lixing. Control mechanism and experimental study on renewable bearing arch in soft and mudding roadway under dynamical pressure impact[J]. Journal of Mining & Safety Engineering, 2018, 35(6): 1135-1141.
|
[8] |
王宏伟,张登强,邓代新,等.非静水压力条件下巷道围岩破碎区应力分布特征[J].煤炭学报,2020,45(11):3717-3725.
WANG Hongwei, ZHANG Dengqiang, DENG Daixin, et al. Stress distribution characteristics of roadway surrounding rock damaged zone under non-hydrostatic pressure[J]. Journal of China Coal Society, 2020, 45(11): 3717-3725.
|
[9] |
王宏伟,姜耀东,赵毅鑫,等.软弱破碎围岩高强高预紧力支护技术与应用[J].采矿与安全工程学报,2012, 29(4):474-480.
WANG Hongwei, JIANG Yaodong, ZHAO Yixin, et al. Application of support technology with high strength and high pretension stress for weak-broken rocks[J]. Journal of Mining & Safety Engineering, 2012, 29(4): 474-480.
|
[10] |
李树刚,成小雨,刘超,等.破碎围岩动压巷道锚索支护与注浆加固技术研究[J].煤炭科学技术,2016,44(1):67-72.
LI Shugang, CHENG Xiaoyu, LIU Chao, et al. Research on technology of anchor cable supporting and grouting reinforcement for dynamic pressurized tunnel with crushed surrounding rock[J]. Coal Science and Technology, 2016, 44(1): 67-72.
|
[11] |
张传恕,杜计平.深井大断面松软破碎围岩巷道稳定性控制技术[J].煤炭科学技术,2013,41(12):19.
ZHANG Chuanshu, DU Jiping. Stability control technology of deep mine rock roadway with large cross section and soft broken surrounding rock[J]. Coal Science and Technology, 2013, 41(12): 19.
|
[12] |
单仁亮,蔚振廷,孔祥松,等.松软破碎围岩煤巷强帮强角支护控制技术[J].煤炭科学技术,2013,41(11):25-29.
SHAN Renliang, WEI Zhenting, KONG Xiangsong, et al. Sidewall and corner strengthening support control technology of coal roadway with soft and broken surrounding rock[J]. Coal Science and Technology, 2013, 41(11): 25-29.
|
[13] |
潘锐,程桦,王雷,等.巷道浅层破碎围岩锚注加固承载特性试验研究[J].岩土力学,2020,41(6):1887.
PAN Rui, CHENG Hua, WANG Lei, et al. Experimental study on bearing characteristics of bolt-grouting support in shallow fractured surrounding rock of roadway[J]. Rock and Soil Mechanics, 2020, 41(6): 1887.
|
[14] |
王茂盛,王萌,都海龙.新型无机注浆材料加固破碎围岩技术[J].煤炭科学技术,2014,42(8):8-11.
WANG Maosheng, WANG Meng, DU Hailong. New inorganic grouting material applied to reinforce broken surrounding rock[J]. Coal Science and Technology, 2014, 42(8): 8-11.
|
[15] |
王猛,郑冬杰,李杰.动压作用大巷破碎围岩分区域差异性修复技术研究[J].煤炭科学技术,2019,47(11):255-262.
WANG Meng, ZHENG Dongjie, LI Jie, et al. Study on technology of sub-regional differential repair of broken surrounding rock under dynamic pressure[J]. Coal Science and Technology, 2019, 47(11): 255-262.
|
[16] |
陈晓祥,吴俊鹏.断层破碎带中巷道围岩大变形机理及控制技术研究[J].采矿与安全工程学报,2018,35(5):885-892.
CHEN Xiaoxiang, WU Junpeng. Study on the mechanism and control technology of large deformation of roadway surrounding rock in the fault fracture zone[J]. Journal of Mining & Safety Engineering, 2018, 35(5): 885-892.
|
[17] |
袁超,张建国,王卫军,等.基于塑性区分布形态的软弱破碎巷道围岩控制原理研究[J].采矿与安全工程学报,2020,37(3):451-460.
YUAN Chao, ZHANG Jianguo, WANG Weijun, et al. Controlling principles of surrounding rock in soft and broken roadway based on the distribution pattern of plastic zone[J]. Journal of Mining & Safety Engineering, 2020, 37(3): 451-460.
|
[18] |
王琦,许英东,许硕,等.破碎围岩锚注扩散加固机制研究与应用[J].采矿与安全工程学报,2019,36(5):916-923.
WANG Qi, XU Yingdong, XU Shuo, et al. Study and application of bolt-grouting slurry diffusion and reinforcement mechanism in broken surrounding rock[J]. Journal of Mining & Safety Engineering, 2019, 36(5): 916-923.
|
[19] |
丁自伟,邱华富.破碎围岩巷道新型注浆加固工艺实验研究[J].地下空间与工程学报,2016,12(4):958.
DING Ziwei, QIU Huafu. Experimental research on new grouting reinforcement technology of roadways with fractured surrounding rock[J]. Chinese Journal of Underground Space and Engineering, 2016, 12(4): 958.
|
[20] |
赵光明,张小波,王超,等.软弱破碎巷道围岩深浅承载结构力学分析及数值模拟[J].煤炭学报,2016,41(7):1632-1642.
ZHAO Guangming, ZHANG Xiaobo, WANG Chao, et al. Mechanical analysis and numerical simulation for deep and shallow bearing structures of soft and broken roadway surrounding rock[J]. Journal of China Coal Society, 2016, 41(7): 1632-1642.
|
[21] |
王平,冯涛,蒋运良,等.软弱再生顶板巷道围岩失稳机理及其控制原理与技术[J].煤炭学报,2019,44(10):2953-2965.
WANG Ping, FENG Tao, JIANG Yunliang, et al. Control principle and technology and instability mechanism of surrounding rock in weak regenerated roof[J]. Journal of China Coal Society, 2019, 44(10): 2953-2965.
|
[22] |
沈明荣,陈剑锋.岩体力学[M].上海:同济大学出版社,2015.
|
[1] | YUAN Xiaofang, ZHU Mingjie. Analysis on influencing factors and configuration paths of human-caused accidents in coal mines[J]. Safety in Coal Mines, 2023, 54(3): 245-250. |
[2] | BAI Yanlong, LI Haili, CHEN Yu, HE Shulei, BAI Changjiang, XI Long, XUE Yubi, PENG Jiajia, WANG Xin. Human factor analysis of general accidents in coal mines based on HFACS[J]. Safety in Coal Mines, 2021, 52(5): 250-255. |
[3] | LIU Rulin, CHENG Weimin, YU Yanbin, GAO Tian. Human Factors Analysis of Coal Mine Major Accidents Based on Improved HFACS-MI Model[J]. Safety in Coal Mines, 2017, 48(8): 250-253. |
[4] | QIAO Nan, CHEN Zhaobo, YIN Dongling, ZENG Jianchao, LI Hengying, LI Zhongwei. Aggregated Method of Human Factor Analysis Results for Coal Mine Accidents Based on Group Decision-making Theory[J]. Safety in Coal Mines, 2016, 47(10): 235-237,241. |
[5] | SHI Zepo, XIE Zhihong, CHE Ming. Activity Laws and Control Technology of Roadway Surrounding Rock Influenced by Overhead Mining[J]. Safety in Coal Mines, 2015, 46(9): 44-46,50. |
[6] | SANG Zhibiao, SHEN Xia, CHUAI Xiaoming, PENG Kun, QIAN Hongwei, HE Shanfeng. Identification and Evaluation of Human Risk Factors in Coal Mines[J]. Safety in Coal Mines, 2014, 45(9): 232-234. |
[7] | ZHAO Na, LI Hengying, ZENG Jianchao. Human Factors Analysis of Coal Mine Gas Accidents Based on HFACS[J]. Safety in Coal Mines, 2014, 45(9): 172-174. |
[8] | LIU Hui. Microseismic Activity Law Analysis of Failure and Deformation of Special Igneous Rock[J]. Safety in Coal Mines, 2014, 45(7): 183-186. |
[9] | WANG Yi-ran, XIA Yong-xue, LEI Jing. Mine Pressure Activities Laws of Zhaolou Coal Mine Under One Thousand Meters Deep[J]. Safety in Coal Mines, 2013, 44(2): 71-74. |
[10] | WANG Ge, JU Wei, SHI Xing-long, QIN Tao. Numerical Simulation of Overburden Activities Laws at Working Face[J]. Safety in Coal Mines, 2012, 43(4): 146-149. |