[1] |
康红普,高富强. 煤矿采动应力演化与围岩控制[J]. 岩石力学与工程学报,2024,43(1):1-40.(KANG Hongpu,GAO Fuqiang. Evolution of mining-induced stress and strata control in underground coal mines,2024,43(1):1-40.(in Chinese))
|
[2] |
康红普. 深部煤矿应力分布特征及巷道围岩控制技术[J]. 煤炭科学技术,2013,41(9):12-17.(KANG Hongpu. Stress distribution characteristics and strata control technology for roadways in deep coal mines[J]. Coal Science and Technology,2013,41(9):12-17.(in Chinese))
|
[3] |
SONG Z W,LIU H Y,TANG C A. Development of excavation damaged zones around a rectangular roadway under mining-induced pressure[J]. Tunnelling and Underground Space Technology,2021,118:104163.
|
[4] |
康红普,姜鹏飞,高富强,等. 掘进工作面围岩稳定性分析及快速成巷技术途径[J]. 煤炭学报,2021,46(7):2 023-2 045.(KANG Hongpu,JIANG Pengfei,GAO Fuqiang,et al. Analysis on stability of rock surrounding heading faces and technical approaches for rapid heading[J]. Journal of China Coal Society,2021,46(7):2 023-2 045. (in Chinese))
|
[5] |
王书文. 掘进巷道冲击地压时滞性特征及机理研究[博士学位论文][D]. 北京:中国矿业大学(北京),2022.(WANG Shuwen. Study on time-lag characteristics and mechanism of rock burst in tunneling roadways[Ph. D. Thesis][D]. Beijing:China University of Mining and Technology(Beijing),2022.(in Chinese))
|
[6] |
王 虹,王建利,张小峰. 掘锚一体化高效掘进理论与技术[J]. 煤炭学报,2020,45(6):2 021-2 030.(WANG Hong,WANG Jianli,ZHANG Xiaofeng. Theory and technology of efficient roadway advance with driving and bolting integration[J]. Journal of China Coal Society,2020,45(6):2 021-2 030.(in Chinese))
|
[7] |
王 琦,康红普,王步康,等. 快速掘进工作面围岩分区平行锚固技术[J]. 岩石力学与工程学报,2023,42(11):2 739-2 752.(WANG Qi,KANG Hongpu,WANG Bukang,et al. Research on surrounding rock partitioned parallel anchoring technology in rapid heading faces[J]. Chinese Journal of Rock Mechanics and Engineering,2023,42(11):2 739-2 752.(in Chinese))
|
[8] |
READ R S. Interpreting excavation-induced displacements around a tunnel in highly stressed granite[Ph. D. Thesis][D]. Winnipeg:University of Manitoba(Canada),1994.
|
[9] |
MARTIN C D. The strength of massive Lac du Bonnet granite around underground openings[Ph. D. Thesis][D]. Winnipeg:University of Manitoba(Canada),1993.
|
[10] |
BOSSART P,THURY M. Mont Terri rock laboratory-project,programme 1996 to 2007 and results[R]. Wabern,Switzerland:Swiss Geological Survey,2008.
|
[11] |
MARTINI C D,READ R S,MARTINO J B. Observation of brittle failure around a circular test tunnel[J]. International Journal of Rock Mechanics and Mining Sciences,1997,34(7):1 065-1 073.
|
[12] |
CAI M,KAISER P K,TASAKA Y. Generalized crack initiation and crack damage stress thresholds of brittle rock masses near underground excavations[J]. International Journal of Rock Mechanics and Mining Sciences,2004,41(5):833-847.
|
[13] |
CAI M,KAISER P K,MARTIN C D. Quantification of rock mass damage in underground excavations from microseismic event monitoring[J]. International Journal of Rock Mechanics and Mining Sciences,2001,38(7):1 135-1 145.
|
[14] |
刘 宁,张春生,陈祥荣,等. 深埋隧洞开挖围岩应力演化过程监测及特征研究[J]. 岩石力学与工程学报,2011,30(9):1 729-1 737. (LIU Ning,ZHANG Chunsheng,CHEN Xiangrong,et al. Monitoring and characteristics study of stress evolution of surrounding rock during deep tunnel excavation[J]. Chinese Journal of Rock Mechanics and Engineering,2011,30(9):1 729-1 737.(in Chinese))
|
[15] |
MING-GAO C. A study of the behaviour of overlying strata in longwall mining and its application to strata control[M]. [S. l.]:Elsevier,1981:13-17.
|
[16] |
宋振骐,刘义学,陈孟伯,等. 岩梁裂断前后的支承压力显现及其应用的探讨[J]. 山东矿业学院学报,1984,(1):29-41.(SONG Zhenqi,LIU Yixue,CHEN Mengbo,et al. Abutment pressure behavior before and after strata failure and its application[J]. Journal of Shandong University of Mining Technology,1984,(1):29-41.(in Chinese))
|
[17] |
KANG H P,LOU J F,GAO F Q,et al. A physical and numerical investigation of sudden massive roof collapse during longwall coal retreat mining[J]. International Journal of Coal Geology,2018,188:25-36.
|
[18] |
罗生虎,王 同,伍永平,等. 大倾角煤层长壁开采围岩应力传递路径时空演化特征[J]. 煤炭学报,2022,47(7):2 534-2 545.(LUO Shenghu,WANG Tong,WU Yongping,et al. Space-time evolution characteristics of stress transfer path of surrounding rock in longwall mining of steeply dipping seam[J]. Journal of China Coal Society,2022,47(7):2 534-2 545.(in Chinese))
|
[19] |
庞义辉,张国军,王泓博,等. 综放工作面区段煤柱采动应力全周期时空演化分析[J]. 岩石力学与工程学报,2023,42(4):833-848. (PANG Yihui,ZHANG Guojun,WANG Hongbo,et al. Mining stress full-cycle temporal and spatial evolution analysis on section coal pillar of fully-mechanized caving face[J]. Chinese Journal of Rock Mechanics and Engineering,2023,42(4):833-848.(in Chinese))
|
[20] |
KANG H P,LV H W,GAO F Q,et al. Understanding mechanisms of destressing mining-induced stresses using hydraulic fracturing[J]. International Journal of Coal Geology,2018,196:19-28.
|
[21] |
KANG H P,WU L,GAO F Q,et al. Field study on the load transfer mechanics associated with longwall coal retreat mining[J]. International Journal of Rock Mechanics and Mining Sciences,2019,124:104141.
|
[22] |
康红普,冯彦军. 定向水力压裂工作面煤体应力监测及其演化规律[J]. 煤炭学报,2012,37(12):1 953-1 959.(KANG Hongpu,FENG Yanjun. Monitoring of stress change in coal seam caused by directional hydraulic fracturing in working face with strong roof and its evolution[J]. Journal of China Coal Society,2012,37(12):1 953-1 959. (in Chinese))
|
[23] |
程利兴,姜鹏飞,杨建威,等. 深井孤岛工作面巷道围岩采动应力分区演化特征[J]. 岩土力学,2020,41(12):4 078-4 086.(CHENG Lixing,JIANG Pengfei,YANG Jiangwei,et al. Evolution characteristics of mining-induced stress partition of roadway surrounding rock on working face of deep island[J]. Rock and Soil Mechanics,2020,41(12):4 078-4 086.(in Chinese))
|
[24] |
YU B,ZHANG Z,KUANG T,et al. Stress changes and deformation monitoring of longwall coal pillars located in weak ground[J]. Rock Mechanics and Rock Engineering,2016,49(8):3 293-3 305.
|
[25] |
李 远,刘子斌,乔 兰,等. 基于数字化CSIRO双温补偿方法的岩体扰动应力长期监测系统的研发与应用[J]. 工程科学与技术,2018,50(5):18-26.(LI Yuan,LIU Zibin,QIAO Lan,et al. Stress monitoring techniques based on the twin temperature compensation method of digital CSIRO[J]. Advanced Engineering Science,2018,50(5):18-26.(in Chinese))
|
[26] |
闫振雄,郭奇峰,王培涛. 空心包体应变计地应力分量计算方法及应用[J]. 岩土力学,2018,39(2):715-721.(YAN Zhenxiong,GUO Qifeng,WANG Peitao. Calculation and application of in-situ stress components in hollow inclusion measurement[J]. Rock and Soil Mechanics,2018,39(2):715-721.(in Chinese))
|
[27] |
侯公羽. 基于开挖面空间效应的围岩-支护相互作用机制[J].岩石力学与工程学报,2011,30(增1):2 871-2 877.(HOU Gongyu. Interaction mechanism between surrounding rock and support based on spatial effect of excavation face[J]. Chinese Journal of Rock Mechanics and Engineering,2011,30(Supp.1):2 871-2 877.(in Chinese))
|
[28] |
MEDHURST T P,BROWN E T. A study of the mechanical behaviour of coal for pillar design[J]. International Journal of Rock Mechanics and Mining Sciences,1998,35(8):1 087-1 105.
|
[29] |
BUZZI O,SIEFFERT Y,MENDES J,et al. Strength of an Australian coal under low confinement[J]. Rock Mechanics and Engineering,2014,47:2 265-2 270.
|
[30] |
KAISER P K,KIM B H. Characterization of strength of intact brittle rock considering confinement-dependent failure processes[J]. Rock Mechanics and Engineering,2015,48:107-119.
|
[31] |
GAO F Q,KANG H P. Experimental study on the residual strength of coal under low confinement[J]. Rock Mechanics and Engineering,2017,50:285-296.
|