Citation: | SUN Xiao-ming, REN Chao, LIU Dong-qiao, HE Man-chao, YANG Jin-kun, LI Zhi-hu, ZHU Jia-jie, YUAN Jun-chao, QI Zhen-min. Mechanism analysis and type determination of the rockburst of the Gaoloushan tunnel based on a study of rockburst fragments[J]. Chinese Journal of Engineering, 2023, 45(3): 337-348. doi: 10.13374/j.issn2095-9389.2021.12.16.003 |
[1] |
何滿潮, 劉冬橋, 宮偉力, 等. 沖擊巖爆試驗系統研發及試驗. 巖石力學與工程學報, 2014, 33(9):1729
He M C, Liu D Q, Gong W L, et al. Development of a testing system for impact rockbursts. Chin J Rock Mech Eng, 2014, 33(9): 1729
|
[2] |
Cai M. Influence of intermediate principal stress on rock fracturing and strength near excavation boundaries—Insight from numerical modeling. Int J Rock Mech Min Sci, 2008, 45(5): 763 doi: 10.1016/j.ijrmms.2007.07.026
|
[3] |
Du K, Tao M, Li X B, et al. Experimental study of slabbing and rockburst induced by true-triaxial unloading and local dynamic disturbance. Rock Mech Rock Eng, 2016, 49(9): 3437 doi: 10.1007/s00603-016-0990-4
|
[4] |
Ortlepp W D. The behaviour of tunnels at great depth under large static and dynamic pressures. Tunn Undergr Space Technol, 2001, 16(1): 41 doi: 10.1016/S0886-7798(01)00029-3
|
[5] |
劉冬橋, 何滿潮, 汪承超, 等. 動載誘發沖擊地壓的實驗研究. 煤炭學報, 2016, 41(5):1099
Liu D Q, He M C, Wang C C, et al. Experimental study on rock burst induced by dynamic load. J China Coal Soc, 2016, 41(5): 1099
|
[6] |
劉冬橋, 王煬, 胡祥星, 等. 動載誘發沖擊地壓巷道圍巖應力計算與試驗分析. 煤炭科學技術, 2015, 43(9):42
Liu D Q, Wang Y, Hu X X, et al. Calculation and test analysis on stress of surrounding rock in mine roadway with mine pressure bump occurred by dynamic load. Coal Sci Technol, 2015, 43(9): 42
|
[7] |
Gong F Q, Luo Y, Li X B, et al. Experimental simulation investigation on rockburst induced by spalling failure in deep circular tunnels. Tunn Undergr Space Technol, 2018, 81: 413 doi: 10.1016/j.tust.2018.07.035
|
[8] |
宮鳳強, 羅勇, 劉冬橋. 深部直墻拱形隧洞圍巖板裂破壞的模擬試驗研究. 巖土工程學報, 2019, 41(6):1091
Gong F Q, Luo Y, Liu D Q. Simulation tests on spalling failure in deep straight-wall-top-arch tunnels. Chin J Geotech Eng, 2019, 41(6): 1091
|
[9] |
宮鳳強, 伍武星, 李天斌, 等. 深部硬巖矩形隧洞圍巖板裂破壞的試驗模擬研究. 巖土力學, 2019, 40(6):2085
Gong F Q, Wu W X, Li T B, et al. Simulation experimental study of spalling failure of surrounding rock of rectangular tunnel of deep hard rock. Rock Soil Mech, 2019, 40(6): 2085
|
[10] |
Gong F Q, Si X F, Li X B, et al. Experimental investigation of strain rockburst in circular caverns under deep three-dimensional high-stress conditions. Rock Mech Rock Eng, 2019, 52(5): 1459 doi: 10.1007/s00603-018-1660-5
|
[11] |
Wang Y, He M C, Liu D Q, et al. Rockburst in sandstone containing elliptic holes with varying axial ratios. Adv Mater Sci Eng, 2019, 2019: 5169618
|
[12] |
Wang Y, Chun Z, He M C, et al. Fragmentation characteristics analysis of sandstone fragments for impact rockburst under different dynamic loading frequency. Geotech Geol Eng, 2019, 37(4): 2715 doi: 10.1007/s10706-018-00789-7
|
[13] |
周輝, 徐榮超, 盧景景, 等. 深埋隧洞板裂屈曲巖爆機制及物理模擬試驗研究. 巖石力學與工程學報, 2015, 34(增刊2): 3658
Zhou H, Xu R C, Lu J J, et al. Study on mechanisms and physical simulation experiment of slab buckling rockburst in deep tunnel. Chin J Rock Mech Eng, 2015, 34(Suppl 2): 3658
|
[14] |
劉冬橋, 張曉云, 何滿潮, 等. 砂巖沖擊巖爆實驗碎屑研究. 礦業科學學報, 2018, 3(3):246
Liu D Q, Zhang X Y, He M C, et al. Study on sandstone fragments from impact rockburst experiments. J Min Sci Technol, 2018, 3(3): 246
|
[15] |
吝曼卿, 張電吉, 潘登, 等. 磷塊巖的巖爆碎屑細觀分析與巖爆演化研究. 化工礦物與加工, 2017, 46(5):34
Lin M Q, Zhang D J, Pan D, et al. Research on rock burst evolution and micromechanics analysis of phosphate fragments from rock burst. Ind Miner Process, 2017, 46(5): 34
|
[16] |
任富強, 常遠, 汪東, 等. 集寧板巖巖爆碎屑分形特征分析. 長江科學院院報, 2016, 33(10):102
Ren F Q, Chang Y, Wang D, et al. Fractal characteristics of fragments generated from rockburst test on slate taken from Jining. J Yangtze River Sci Res Inst, 2016, 33(10): 102
|
[17] |
章雅琦, 周宗紅, 金小川, 等. 動靜組合加載下白云巖碎屑破壞特征研究. 礦業研究與開發, 2014, 34(7):54
Zhang Y Q, Zhou Z H, Jin X C, et al. Research on failure characteristics of dolomite fragments under static-dynamic coupling loading. Min Res Dev, 2014, 34(7): 54
|
[18] |
謝和平, Pariseau W G. 巖爆的分形特征和機理. 巖石力學與工程學報, 1993, 12(1):28
Xie H P, Pariseau W G. Fractal character and mechanism of rock burst. Chin J Rock Mech Eng, 1993, 12(1): 28
|
[19] |
李德建, 賈雪娜, 苗金麗, 等. 花崗巖巖爆試驗碎屑分形特征分析. 巖石力學與工程學報, 2010, 29(S1): 3280
Li D J, Jia X N, Miao J L, et al. Analysis of fractal characteristics of fragment from rockburst test of granite. Chin J Rock Mech Eng, 2010, 29(Suppl 1): 3280
|
[20] |
趙菲, 何滿潮, 李德建, 等. 真三軸卸載煤爆實驗破壞特征演化分析. 地下空間與工程學報, 2019, 15(1):142
Zhao F, He M C, Li D J, et al. Damage evolution in the fracture process of coal burst during true traxial unloading test. Chin J Undergr Space Eng, 2019, 15(1): 142
|
[21] |
夏元友, 吝曼卿, 廖璐璐, 等. 大尺寸試件巖爆試驗碎屑分形特征分析. 巖石力學與工程學報, 2014, 33(7):1358
Xia Y Y, Lin M Q, Liao L L, et al. Fractal characteristic analysis of fragments from rockburst tests of large-diameter specimens. Chin J Rock Mech Eng, 2014, 33(7): 1358
|
[22] |
許金余, 劉石. 大理巖沖擊加載試驗碎塊的分形特征分析. 巖土力學, 2012, 33(11):3225
Xu J Y, Liu S. Research on fractal characteristics of marble fragments subjected to impact loading. Rock Soil Mech, 2012, 33(11): 3225
|
[23] |
杜晶, 李夕兵, 宮鳳強, 等. 巖石沖擊實驗碎屑分類及其分形特征. 礦業研究與開發, 2010, 30(5):20
Du J, Li X B, Gong F Q, et al. Classification and fractal characteristics of the fragments from impacting experiment of rock. Min Res Dev, 2010, 30(5): 20
|
[24] |
姚志賓, 牛文靜, 張宇, 等. 巖爆數據庫管理系統開發及應用. 工程科學學報, 2022, 44(5):865
Yao Z B, Niu W J, Zhang Y, et al. Development and application of a rockburst database management system. Chin J Eng, 2022, 44(5): 865
|
[25] |
何滿潮. 應變巖爆實驗力學. 北京: 科學出版社, 2020
He M C. Experimental Mechanics of Strain Rockburst. Beijing: Science Press, 2020
|
[26] |
單曉云, 李占金. 分形理論和巖石破碎的分形研究. 河北理工學院學報, 2003, 25(2):11
Shan X Y, Li Z J. Fractal theory, characteristics and its application on rock fragmentation. J Hebei Inst Technol, 2003, 25(2): 11
|
[27] |
何滿潮, 王煬, 蘇勁松, 等. 動靜組合荷載下砂巖沖擊巖爆碎屑分形特征. 中國礦業大學學報, 2018, 47(4):699
He M C, Wang Y, Su J S, et al. Analysis of fractal characteristics of fragment of sandstone impact rock burst under static and dynamic coupled loads. J China Univ Min Technol, 2018, 47(4): 699
|