| [1] 何富连,吕凯,许旭辉,等. 近距离煤层综放末采关键块体回转机制及其应用[J]. 岩石力学与工程学报. 2023, 42(08): 1832-1846.HE Fulian, LV Kai, XU Xuhui, et al.. Key block rotation mechanism and its application in fully-mechanized top-coal caving of close distance coal seam [J]. Chinese Journal of Rock Mechanics and Engineering.2023,42 ( 08 ) : 1832-1846.[2] YONG Zhaorui, NIE Wen, MA Guowei, et al. Time-dependent behavior of reinforcement rock unit anchored by energy-absorbing bolt for large deformation control in tunneling[J]. International Journal of Rock Mechanics and Mining Sciences. 2024, 174: 105629.[3] 赵沁彬,余伟健,潘豹,等. 多重断层条件下采场巷道围岩变形与应力分布规律[J]. 矿业安全与环保. 2024, 5(2): 2-10.ZHAO Qinbin, YU Weijian, PAN Bao, et al. Deformation and stress distribution of surrounding rock of stope roadway under multiple faults [ J ]. Mining Safety & Environmental Protection. 2024,5 ( 2 ) : 2-10.[4] 穆成林,裴向军,路军富,等. 基于尖点突变模型巷道层状围岩失稳机制及判据研究[J]. 煤炭学报. 2017, 42(06): 1429-1435.MU Chenglin, PEI Xiangjun, LU Junfu, et al. Study on the instability criterion of layered rock mass failure based on the cusp catastrophe theory [J]. Journal of China Coal Society.2017,42 (06): 1429-1435.[5] 付成华,陈胜宏. 基于突变理论的地下工程洞室围岩失稳判据研究[J]. 岩土力学. 2008, 29(1): 167-172.FU Chenghua, CHEN Shenghong. Study on the instability criterion of layered rock mass failure based on the cusp catastrophe theory [ J]. Rock and Soil Mechanics.2008,29 (1): 167-172.[6] 邵冠慧,李晓昭,赵晓豹,等. 不同变形失稳模式下隧道围岩稳定性判据研究的进展[J]. 防灾减灾工程学报. 2009, 29(5): 577-582.[7] SHAO Guan-hui, LI Xiao-zhao, ZHAO Xiao-bao, et al. Development of Stability Criteria for Rock Mass Surrounding a Tunnel under Different Failure Modes [ J ]. Journal of Disaster Prevention and Mitigation Engineering. 2009, 29 ( 5 ) : 577-582.[8] 张国江. 近距离煤层群下位煤层开采顶板来压规律与稳定性控制[J]. 中国矿山工程. 2023, 52(2): 59-63.ZHANG Ganjiang. Roof weighting law and stability control of lower coal seam mining in close coal seam group [ J ]. China Mine Engineering. 2023, 52 ( 2 ) : 59-63.[9] 张艳,郭亮亮,高利军,等. 近距离煤层重复采动覆岩移动变形规律研究[J]. 能源技术与管理. 2023, 48(4): 17-20.ZHANG Yan, GUO Liangliang, GAO Lijun, et al.. Study on the law of movement and deformation of overlying strata in repeated mining of close distance coal seams [ J ]. Energy Technology and Management.2023,48 ( 4 ) : 17-20.[10] 周存柳,康向涛,胡锦国. 岩溶影响下近距离煤层采动覆岩运移及裂隙演化规律研究[J]. 矿业研究与开发. 2023, 43(12): 86-93.ZHOU Cunliu, KANG Xiangtao, HU Jinguo.Study on the migration and fracture evolution of overlying strata in close distance coal seam under the influence of karst [ J]. Mining Research and Development.2023,43 (12) : 86-93.[11] 李亮,何富连,许旭辉,等. 近距离煤层应力拱形态与支承压力分布演化研究[J]. 采矿与安全工程学报. 2023, 40(02): 295-303.LI Liang, HE Fulian, XU Xuhui, et al.. Study on the evolution of stress arch shape and abutment pressure distribution in close distance coal seams [ J ]. Journal of Mining & Safety Engineering.2023,40 ( 02 ) : 295-303.[12] 崔俊彪,张百胜,郭俊庆,等. 近距离煤层错层位切顶卸压护巷技术[J]. 矿业安全与环保. 2023, 50(4): 74-80.CUI Junbiao, ZHANG Baisheng, GUO Junqing, et al. Technology of roof cutting, pressure relief and roadway protection in short distance coal seams [ J]. Mining Safety & Environmental Protection. 2023, 50 ( 4 ): 74-80.[13] 潘忠德,张珂,顾成富,等. 近距离煤层采动影响及巷道合理位置研究[J]. 煤炭技术. 2023, 42(4): 43-47.PAN Zhongde, ZHANG Ke, GU Chengfu, et al. Study on the influence of mining in close coal seams and the reasonable position of roadways [ J ].Coal technology. 2023, 42 ( 4 ) : 43-47.[14] 黄庆享,王小军,贺雁鹏,等. 浅埋近距离煤层开采顶板活化结构及支架动载研究[J]. 采矿与安全工程学报. 2022, 39(5): 857-866.HUANG Qingxiang, WANG Xiaojun, HE Yanpeng, et al.. Study on roof activation structure and support dynamic load of shallow buried close distance coal seam mining [ J ]. Journal of Mining & Safety Engineering. 2022, 39 ( 5 ) : 857-866.[15] 郑铁华,李金刚. 补连塔煤矿浅埋近距离煤层过上覆煤柱强矿压灾害防治机理及应用[J]. 煤炭科学技术. 2022, 50(S1): 71-80.ZHENG Tiehua, LI Jingang.Bulianta Coal Mine Shallow Buried Close Distance Coal Seam Overlying Coal Pillar Strong Rock Pressure Disaster Prevention Mechanism and Application [ J ].Coal Science and Technology.2022,50 ( S1 ) : 71-80.[16] 王伟,弓仲标. 近距离煤层群煤柱下开采动压巷道围岩变形规律及控制[J]. 煤炭科学技术. 2022, 50(S2): 143-152.WANG Wei, GONG Zhongbiao. Deformation law and control of surrounding rock of dynamic pressure roadway in mining under coal pillar of close distance coal seam group [ J ].Coal science and technology. 2022,50 ( S2 ) : 143-152.[17] 陈廷学,晁宁,姚强岭. 极近距离煤层采空区下煤巷围岩稳定控制技术研究[J]. 煤炭技术. 2022, 41(10): 89-93.CHEN Tingxue, CHAO Ning, YAO Qiangling.Study on surrounding rock stability control technology of coal roadway under goaf of extremely close coal seam [ J ].Coal technology.2022,41 ( 10 ) : 89-93.[18] 张杰,康小杰,白文勇,等. 近距离下煤层迎采掘进巷道围岩失稳特征与支护设计[J]. 矿业研究与开发. 2022, 42(04): 95-101.ZHANG Jie, KANG Xiaojie, BAI Wenyong, et al. Surrounding rock instability characteristics and support design of mining roadway in close lower coal seam [ J ]. Mining Research and Development. 2022, 42 ( 04 ) : 95-101.[19] 郭帅,庄志鹏,段晓博,等. 采空区下近距离下煤层覆岩结构及支架载荷分析[J]. 矿业研究与开发. 2023, 43(03): 142-146.GUO Shuai, ZHUANG Zhipeng, DUAN Xiaobo, et al.Analysis of overlying strata structure and support load of close-distance lower coal seam under goaf [ J ].Mining research and development. 2023, 43 ( 03 ) : 142-146. |