| [1]王佟, 刘峰, 赵欣, 等. “双碳”背景下我国煤炭资源保障能力与勘查方向的思考[J]. 煤炭科学技术, 2023, 51(12): 1-8.WANG Tong, LIU Feng, ZHAO Xin, et al. Reflection on China's coal resource guarantee capacity and exploration work under the background of “double carbon”[J]. Coal Science and Technology, 2023, 51(12): 1-8.[2]王永臻, 杨丽丽, 门相勇, 等. 我国能源行业高质量发展面临的挑战与对策[J]. 中国矿业, 2025, 34(01): 70-78.WANG Yongzhen, YANG Lili, MEN Xiangyong, et al. Challenges and suggestions for the high-quality development of China's energy industry[J]. China Mining Magazine, 2025, 34(01): 70-78.[3]梁春豪, 李进鹏. 近距离突出煤层群无煤柱开采及立体抽采技术[J]. 煤炭科学技术, 2013, 41(12): 63-66.LIANG Chunhao, LI Jinpeng. Three Dimensional Gas Drainage Technology of Pillarless Coal Mining in Contiguous Outburst Seams Group[J]. Coal Science and Technology, 2013, 41(12): 63-66.[4]钱鸣高, 许家林, 王家臣, 等. 矿山压力与岩层控制[M]. 徐州: 中国矿业大学出版社, 2020.[5]王传朋, 王元杰, 陈法兵. 集贤煤矿深部开采强冲击危险煤层冲击地压防治技术[J]. 煤矿安全, 2014, 45(08): 92-94.WANG Chuanpeng, WANG Yuanjie, CHEN Fabing. Rock Burst Control Technology for Deep Seam Mining with High Burst Dangerous in Jixian Coal Mine[J]. Safety in Coal Mines, 2014, 45(08): 92-94.[6]于不凡. 煤矿瓦斯灾害防治及利用技术手册[M]. 北京: 煤炭工业出版社, 2005.[7]于贵良, 李前, 王元杰. 深部急倾斜特厚煤层分层开采冲击地压防治技术[J]. 煤炭科学技术, 2011, 39(02): 17-21+42.YU Guiliang, LI Qian, WANG Yuanjie. Study on Mine Pressure Bumping Prevention and Control of Slice Mining in Ultra Thick Steep Inclined Seam of Deep Mine[J]. Coal Science and Technology, 2011, 39(02): 17-21+42.[8]石必明, 刘泽功. 保护层开采上覆煤层变形特性数值模拟[J]. 煤炭学报, 2008, 33(1): 17-22.SHI Biming, LIU Zegong. Numerical simulation of the upper coal and rock deformation characteristic caused by mining protecting stratum[J]. Journal of China Coal Society, 2008, 33(1): 17-22.[9]高忠国, 杨俊鹏, 辛亚军, 等. 远距离下保护层开采覆岩裂隙演化规律及相似模拟分析[J]. 煤炭工程, 2025, 57(05): 117-124.GAO Zhongguo, YANG Junpeng, XIN Yajun, et al. Fracture evolution law and similarity simulation analysis of overburden movement in long-distance lower protective seam mining[J]. Coal Engineering, 2025, 57(05): 117-124.[10]王中华, 曹建军. 深部远距离煤层群卸压主控因素及首采层优选方法研究[J]. 煤炭科学技术, 2021, 49(08): 154-161.WANG Zhonghua, CAO Jianjun. Study on main control factors of pressure relief of deep and long-distance coal seams group and optimization method of initial mining[J]. Coal Science and Technology, 2021, 49(08): 154-161.[11]谢小平, 刘洪洋, 梁敏富. 半煤岩工作面保护层开采的卸压机理及回采设备选型[J]. 煤炭科学技术, 2019, 47(03): 168-174.XIE Xiaoping, LIU Hongyang, LIANG Minfu. Study on mechanism of pressure relief and selection of key equipment for protective layer of semi-coal rock working face[J]. Coal Science and Technology, 2019, 47(03): 168-174.[12]徐刚, 王磊, 金洪伟, 等. 上保护层开采对下部特厚煤层移动变形规律及保护效果考察研究[J]. 中国安全生产科学技术, 2019, 15(06): 36-41.XU Gang, WANG Lei, JIN Hongwei, et al. Study on movement deformation laws and protection effect of lower ultra-thick coal seam affected by upper protective layer mining[J]. Journal of Safety Science and Technology, 2019, 15(06): 36-41.[13]石钰, 赵佳蕊, 詹可亮, 等. 远距离上被保护煤层应力变化与瓦斯渗流耦合机制研究[J]. 矿业安全与环保, 2025, 52(01): 47-54.SHI Yu, ZHAO Jiarui, ZHAN Keliang, et al. Study on coupling mechanism of gas seepage and stress variation in long-distance upper protected coal seam[J]. Mining Safety & Environmental Protection, 2025, 52(01): 47-54.[14]解嘉豪, 韩刚, 姚锐, 等. 冲击地压矿井近距离煤层被保护层工作面布置方法研究[J]. 煤炭工程, 2024, 56(07): 14-21.XIE Jiahao, HAN Gang, YAO Rui, et al. Working face layout of protected layers of contiguous seams at rock burst mines[J]. Coal Engineering, 2024, 56(07): 14-21.[15]孙振于, 白金正, 余波, 等. 双煤层协同开采矿井防冲优化设计[J]. 煤炭工程, 2023, 55(12): 1-4.SUN Zhenyu, BAI Jinzheng, YU Bo, et al. Optimization design of rock burst prevention and control in cooperative mining of double coal seams[J]. Coal Engineering, 2023, 55(12): 1-4.[16]庞龙龙, 徐学锋, 司亮, 等. 开采上保护层对巨厚砾岩诱发冲击矿压的减冲机制分析[J]. 岩土力学, 2016, 37(S2): 120-128.PANG Longlong, XU Xuefeng, SI Liang, et al. Analysis of prevention mechanism of upper protective seam mining on rockrockburst induced by thick conglomerate[J]. Rock and Soil Mechanics, 2016, 37(S2): 120-128.[17]王浩, 赵毅鑫, 焦振华, 等. 复合动力灾害危险下被保护层回采巷道位置优化[J]. 采矿与安全工程学报, 2017, 34(06): 1060-1066.WANG Hao, ZHAO Yixin, JIAO Zhenhua, et al. Optimization of the roadway location in protected seam with composite dynamic hazards[J]. Journal of Mining & Safety Engineering, 2017, 34(06): 1060-1066.[18]郭日修. 弹性力学与张量分析[M]. 北京: 国防工业出版社, 2003.[19]徐芝纶. 弹性力学[M]. 北京: 高等教育出版社, 2016.[20]孙凯强, 杨敬轩, 郭春辉, 等. 倾斜工作面切顶条件下的合理煤柱留设尺寸确定[J]. 煤炭技术, 2025, 44(06): 18-23.SUN Kaiqiang, YANG Jingxuan, GUO Chunhui, et al. Reasonable Size of Coal Pillars Left under Roof Cutting Conditions in Inclined Working Faces[J]. Coal Technology, 2025, 44(06): 18-23.[21]许家林, 朱卫兵, 王晓振. 基于关键层位置的导水裂隙带高度预计方法[J]. 煤炭学报, 2012, 37(05): 762-769.XU Jialin, ZHU Weibing, WANG Xiaozhen. New method to predict the height of fractured water-conducting zone by location of key strata[J]. Journal of China Coal Society, 2012, 37(05): 762-769.[22]刘团, 张百胜, 郭俊庆, 等. 邻采邻掘动压巷道密集钻孔切顶卸压技术研究[J]. 矿业研究与开发, 2024, 44(01): 42-47.LIU Tuan, ZHANG Baisheng, GUO Junqing, et al. Research on Roof Cutting and Pressure Relief Technology of Dense Borehole in Adjacent Mining and Adjacent Excavation of Dynamic Pressure Roadway[J]. Mining Research and Development, 2024, 44(01): 42-47. |