| [1]宋选民, 朱德福, 王仲伦, 等. 我国煤矿综放开采40年:理论与技术装备研究进展[J]. 煤炭科学技术, 2021, 49(3): 1-29.SONG Xuanmin, ZHU Defu, WANG Zhonglun, et al. Advances on longwall fully-mechanized top-coal caving mining technology in China during past 40 years: theory, equipment and approach[J]. Coal Science and Technology, 2021, 49(3): 1-29.[2]王家臣. 我国综放开采40年及展望[J]. 煤炭学报, 2023, 48(1): 83-99.WANG Jiachen. 40 years development and prospect of longwall top coal caving in China [J]. Journal of ChinaCoal Society, 2023, 48(1): 83-99.[3]孟宪锐, 吴昊天, 王国斌. 我国厚煤层采煤技术的发展及采煤方法的选择[J]. 煤炭工程, 2014, 46(10): 43-47.MENG Xianrui, WU Haotian, WANG Guobin. Development and method selection of thick coal seam mining technology in China[J]. Coal Engineering, 2014, 46(10): 43-47.[4]M M. Protodyakonov. On mine pressures and their influence on mine workings[M]. Moscow: State Mining Publishing House, 1926.[5]H. K. Klinke. Contributions to the calculation of pillar strength in hard coal mining[M]. Essen: Verlag Glückauf GmbH, 1968.[6]侯朝炯, 马念杰. 煤层巷道两帮煤体应力和极限平衡区的探讨[J]. 煤炭学报, 1989, 12(4): 21-29.HOU Chaojiong, MA Nianjie. Stress in in-seam roadway sides and limit equilibrium zone[J]. Journal of China Coal Society, 1989, 12(4): 21-29.[7]张鹏鹏, 郝兵元, 王凯, 等. 综放开采沿空掘巷小煤柱宽度留设及支护技术研究[J]. 煤炭科学技术, 2018, 46(5): 40-46.ZHANG Pengpeng, HAO Bingyuan, WANG Kai, et al. Study on width design of small coal pillar and support technology of gob-side entry driving by fully-mechanized top coal caving[J]. Coal Science and Technology, 2018, 46(5): 40-46.[8]康红普, 张晓, 王东攀, 等. 无煤柱开采围岩控制技术及应用[J]. 煤炭学报, 2022, 47(1): 16-44.KANG Hongpu, ZHANG Xiao, WANG Dongpan, et al. Strata control technology and applications of non-pillar coal mining[J]. Journal of China Coal Society, 2022, 47(1): 16-44.[9]张自政, 柏建彪, 王襄禹, 等. 我国沿空留巷围岩控制技术研究进展与展望[J]. 煤炭学报, 2023, 48(11): 3979-4000.ZHANG Zizheng, BAI Jianbiao, WANG Xiangxi, et al. Review and development of surrounding rock control technology for gob-side entry retaining in China[J]. Journal of China Coal Society, 2023, 48(11): 3979-4000.[10]何富连, 高峰, 孙运江, 等. 窄煤柱综放煤巷钢梁桁架非对称支护机理及应用[J]. 煤炭学报, 2015, 40(10): 2296-2302.HE Fulian, GAO Feng, SUN Yunjiang, et al. Multiple-cable-girder-truss asymmetric support mechanism and its application in the roadway of fully mechanized top coal caving face with narrow coal pillar[J]. Journal of China Coal Society, 2015, 40(10): 2296-2302.[11]彭林军, 宋振骐, 周光华, 等. 大采高综放动压巷道窄煤柱沿空掘巷围岩控制[J]. 煤炭科学技术, 2021, 49(10): 34-43.PENG Lin Jun, SONG Zhenqi, ZHOU Guanghua, et al. Surrounding rock control on narrow coal pillar along gob in dynamic pressure roadway with large mining height top coal caving[J]. Coal Science and Technology, 2021, 49(10): 34-43.[12]崔永青, 赵宝友. 综放工作面端头滞后放顶煤技术研究及应用[J]. 煤炭工程, 2025, 57(7): 1-7.CUI Yongqing, ZHAO Baoyou. Lagged top coal caving technology at the ends of fully mechanized top coal caving faces[J]. Coal Engineering, 2025, 57(7): 1-7.[13]王崇勋, 荚逸晨, 赵宝友. 回采巷道顶煤二氧化碳气爆致裂冒放技术[J]. 煤炭工程, 2023, 55(8): 63-67.WANG Chongxun, JIE Yichen, ZHAO Baoyou. Top coal caving enhancement by CO2 gas shock technique in coal mine entry[J]. Coal Engineering, 2023, 55(8): 63-67.[14]任青文, 张宏朝. 关于芬纳公式的修正[J]. 河海大学学报(自然科学版), 2001, 29(6): 109-111.REN Qingwen, ZHANG Hongchao. A modification of Fenner formula[J]. Jounal of Hohai University, 2001, 29(6): 109-111.[15]史达, 高明星, 赵宝友. 高瓦斯综放面开切眼架前膨胀预裂坚硬顶板切顶技术研究[J]. 煤炭技术, 2024, 43(6): 64-68.SHI Da, GAO Mingxing, ZHAO Baoyou. Expansion pre-splitting technique in front of open cut for hard roof cutting in high gas fully-mechanized caving face[J]. Coal Technology, 2024, 43(6): 64-68.[16]张庆国, 赵红星, 袁爽, 等. 基于巷道围岩预应力分布特征的锚杆支护参数研究[J]. 煤炭工程, 2022, 54(8): 30-36.ZHANG Qingguo, ZHAO Hongxing, YUAN Shuang, et al. A practical method for designing supporting parameters of rock bolt based on pretension stress distribution in surrounding rock[J]. Journal of China Coal Society, 2022, 54(8): 30-36. |