| [1] 唐东旭,赵文光,张俊文,等.深埋冲击倾向性煤层沿空掘巷窄煤柱合理宽度及控制技术[J].矿业科学学报,2024,9(06):921-931.TANG Dongxu, ZHAO Wenguang, ZHANG Junwen, et al. Reasonable width and control technology of narrow coal pillar in gob-side entry driving in deep-buried bump-prone coal seam [J]. Journal of Mining Science and Technology,2024,9(6) :921-931.[2] Wu Y, Gao Y, Ma X, et al. A new theory for determining large deformation area of roof at intersection and verification analysis[J]. Journal of Central South University, 2025, 32(2): 656-677.[3] 孙晓明,齐振敏,缪澄宇,等.万福矿深埋大断面T型交叉点高预应力NPR支护机制及应用[J].岩土力学,2023,44(04):1130-1141.Sun Xiaoming, Qi Zhenmin, Miu Chengyu, et al. Supporting mechanism and application of high pre-stress NPR in surrounding rock of deeply-buried large section T-type intersection in Wanfu coal mine[J]. Rock and Soil Mechanics,2023,44(04):1130-1141.[4] Xu Y, Zhou Y, Zhu C, et al. Evolution of stress field and plastic failure characteristics non-isobaric narrow gas storage spaces[J]. Energy, 2024, 297: 131160.[5] 钱鸣高,缪协兴,许家林.岩层控制中的关键层理论研究[J].煤炭学报,1996(3):2-7.QIAN Minggao, MIU Xiexing, XU Jialin. Research on Key Layer Theory in Rock Strata Control[J]. ournal of Coal Science & Engineering, 1996(3):2-7.[6] 程辉,赵洪宝,徐建峰,等.基于滑移线场理论的巷道底鼓机理与防治技术研究[J].矿业科学学报,2021,6(03):314-322.Cheng Hui, Zhao Hongbao, Xu Jianfeng, et al. Study on floor heave mechanism and control technology of roadway based on slip line field theory[J]. Journal of Mining Science and Technology,2021,6(03):314-322.[7] 刘洪涛,韩子俊,韩洲,等.考虑轴向应力作用的“围岩-支护”相互作用关系研究[J].采矿与安全工程学报,2024,41(06):1116-1124.Liu Hongtao, Han Zijun, Han Zhou, et al. Study on the interaction relationship between surrounding rock and support considering axial stress[J]. Journal of Mining & Safety Engineering,2024,41(06):1116-1124.[8] Jin Zhupeng, Qin Tao, Zhang Junwen. Analysis of abutment pressure distribution characteristics and influencing factors of deep mining height face[J]. Coal Science and Technology,2018,46(S1):97-99,134.[9] Wang H, Wang F, Guo C, et al. Experimental investigation on the failure characteristic and synergistic load-bearing mechanism of multi-layer linings for deep soft rock tunnels[J]. Underground Space, 2025, 20: 259-276.[10] 李季,张荣光,余洋,等.采动应力偏转诱发回采巷道顶板断层活化风险评估[J].岩石力学与工程学报,2023,42(S2):4109-4120.Li Ji, Zhang Rongguang, Yu Yang, et al. Risk assessment of roof fault activation induced by mining stress deflection in mining roadway[J]. Chinese Journal of Rock Mechanics and Engineering,2023,42(S2):4109-4120.[11] 王志强,徐春虎,王鹏,等.孤岛工作面顶底板应力传递规律数值模拟研究[J].矿业科学学报,2020,5(01):67-75.Wang Zhiqiang, Xu Chunhu, Wang Peng, et al. Study on numerical simulation of stress transfer law of isolated working face in top and bottom plate[J]. Journal of Mining Science and Technology,2020,5(01):67-75.[12] 王方田,屈鸿飞,张洋.深井煤巷帮部围岩剪切滑块理论及防控策略[J].煤炭学报,2023,48(S1):47-60.Wang Fangtian, Qu Hongfei, Zhang Yang. Shear slide block theory and its control strategy for coal wall in deep roadways[J]. Journal of China Coal Society, 2023,48(S1):47-60.[13] Geng W, Wang W, Huang G, et al. Case study on the secondary support time and optimization of combined support for a roadway under high in-situ stress[J]. Geomechanics and Geophysics for Geo-Energy and Geo-Resources, 2024, 10(1): 66.[14] 曹丁园,潘瑞凯,白锦文,等.跨煤柱开采覆岩运动与载荷传递特征三维相似模拟研究[J].矿业科学学报,2025,10(03):477-488.Cao Dingyuan, Pan Ruikai, Bai Jinwen, et al. Three-dimensional similarity simulation research on the overburden movement and the characteristics of load transfer in crossing-pillar mining[J]. Journal of Mining Science and Technology, 2025,10(03):477-488.[15] Wang B, Chen Y, Li T, et al. Study on the mechanisms of time-dependent crack propagation and the gradual collapse of roadways in soft–hard composite strata[J]. Theoretical and Applied Fracture Mechanics, 2024, 134: 104763.[16] Li Z, Zhou Y, Xu X, et al. The mechanistical princip les and engineering application of roof-cutting for roadway protection in advance of the working face[J]. Scientific Reports, 2025, 15(1): 1660.[17] Zhang Q, Meng X, Zhao G, et al. Energy dissipation and damage mechanism of rocks under true triaxial graded perturbations[J]. Soil Dynamics and Earthquake Engineering, 2025,190:109192.[18] 赵春虎.孤岛工作面底板破坏深度微震测试与模拟分析[J].煤田地质与勘探,2019,47(4):110-116.ZHAO Chunhu. Microseismic test and numerical simulation analysis of floor failure depth of isolated coal mining face[J]. Coal of geology and exploration,2019,47(4):110-116.[19] 戴文琦.相邻综采工作面采空区覆岩压力分布特征研究[J].煤矿安全,2022,53(07):195-200.DAI Wenqi. Pressure distribution characteristics of overlying strata in adjacent fully mechanized mining face[J]. Safety in Coal Mines,2022,53(07):195-200.[20] 王文学,王四巍,刘海宁,等.采后覆岩裂隙岩体应力恢复的时空特征[J].采矿与安全工程学报,2017,34(01):127-133.WANG Wenxue,WANG Siwei,LIU Haining,et al. The space and time characteristics of the cover stress re-establishment of the fractured rock mass in the goaf after coal mining[J]. Journal of Mining & Safety Engineering,2017,34(01):127-133.[21] 黄庆享,高翔宇,贺雁鹏,等.浅埋近距离煤层工作面过末采煤柱覆岩结构及动载传递规律研究[J].采矿与安全工程学报,2023,40(03):517-524.HUANG Qingxiang, GAO Xiangyu, HE Yangpeng, et al. Rearch on strate structure and dynamic load transfer of under coal pillars of last mining section in shallow and close coal seams[J]. Journal of Mining & Safety Engineering,2023,40(03):517-524.[22] 王庆雄,黄庆享,范东林,等.浅埋近距离煤层工作面过三角形斜交煤柱开采应力演化规律研究[J].采矿与安全工程学报,2024,41(02):285-294.WANG Qingxiong, HUANG Qingxiang, FAN Donglin, et al. Research on the abutment stress evolution of working face mining under triangular oblique coal pillar in shallow buried close coal seams[J]. Journal of Mining & Safety Engineering,2024,41(02):285-294.[23] 黄庆享,张东杰,韦业豪,等.浅埋工作面过沟开采覆岩裂隙发育规律及来压机理[J].西安科技大学学报,2025,45(04):639-649.Huang qingxiang, Zhang dongjie, Wei yehao, et, al. Overburden fracture development law and weighting mechanism in shallow coal face gully-crossing mining[J] Journal of Xi’an University of Science and Technology, 2025,45(04):639-649.[24] 潘锐,蔡毅,黄厚旭,等.三软煤层回采支承压力分布及支护构件受力规律研究[J].采矿与安全工程学报,2021,38(06):1091-1099.PAN Rui, CAI Yi, HUANG Houxu, et al. Distribution of advance abutment pressure and stress law of supporting components in three soft coal seam mining[J]. Journal of Mining & Safety Engineering,2021,38(06):1091-1099.[25] 张少华,张玉臣,刘一鸣.典型关键层结构下覆岩采动应力分布规律研究[J].工矿自动化,2019,45(12):50-53.ZHANG Shaohua, ZHANG Yuchen, LIU Yiming. Research on mining stress distribution law of overburden under typical key strata structure[J]. Industry and Mine Automation,2019,45(12):50?53.[26] 付宝杰,高明中,涂敏,等.关键层的复合效应及其对矿压显现的影响[J].采矿与安全工程学报,2016,33(02):220-225.FU Baojie,GAO Mingzhong,TU Min,et al. Composite effect of key stratum and its influence on strata behaviors[J]. Journal of Mining & Safety Engineering, 2016,33(02):220-225.[27] 原富珍,马克,唐春安,等.多关键层结构下不同采厚覆岩移动及围岩响应特征[J].煤炭科学技术,2022,50(06):211-218.YUAN Fuzhen, MA Ke, TANG Chun’an, et al. Movement of overburden with different mining thickness and response characteristics of surrounding rock under multi-key layer structure[J]. Coal Science and Technology,2022,50(06):211-218.[28] 金珠鹏,秦涛,张俊文.深部大采高工作面支承压力分布特征及影响因素分析[J].煤炭科学技术,2018,46(S1):97-99+134.JIN Zhupeng, QIN Tao, ZHANG Junwen. Analysis of abutment pressure distribution characteristics and influencing factors of deep mining height face[J]. Coal Science and Technology,2018,46(S1):97-99+134.[29] 王厚柱,鞠远江,秦坤坤等.深部近距离煤层开采底板破坏规律实测对比研究[J].采矿与安全工程学报,2020,37(3):553-561.WANG Houzhu, JU Yuanjiang, QIN Kunkun. A comparative study on floor failure law in deep and short-distance coal seam mining[J]. Journal of Mining & Safety Engineering, 2020,37(3):553-561.[30] 刘伟韬,穆殿瑞,杨利,李留洋,史晨昊.倾斜煤层底板破坏深度计算方法及主控因素敏感性分析[J].煤炭学报,2017,42(4):849-859.LIU Weitao, MU Dianrui, YANG Li, et al. Calculation method and main factor sensitivity analysis of inclined coal floor damage depth [J]. Journal of China Coal Society,2017,42( 4) : 849-859. |