[1]?郭 晨,夏玉成,孙学阳,等. 高瓦斯矿井采煤工作面瓦斯地质分级评价方法与实践[J]. 煤炭学报,2019,44(8) : 2409-2418.GUO Chen, XIA Yucheng, SUN Xueyang,et al. Method and practice of gas geological grading evaluation on coal mining face of high gas mine [J] . Journal of China Coal Society,2019,44(8) : 2409-2418. [2]孙炳兴.保德煤矿综放工作面巷道布置方式优化及应用[J].煤炭工程,2021 (05) : 7-12.SUN Bingxing. Optimization and application of roadway layout in fully-mechanized caving faces of Baode coal mine [J].Coal Engineering, 2021(05) : 7-12.[3]岳延朋,王 涛,孙志勇. 回采工作面多巷布置复用巷道全锚索支护技术研究[J]. 矿业安全与环保,2022,49(4) :169-175.YUE Yanpeng, WANG Tao, SUN Zhiyong. Research on the whole anchor cable support technology of multi-roadway layout of roadway reuse in coal face [J] . Mining Safety & Environmental Protection,2022,49(4) :169-175.[4]朱红青,霍雨佳,方书昊,等.寺家庄矿综采工作面顶板走向高抽巷合理层位研究[J].煤炭科学技术,2021,49(1) :234-239.ZHU Hongqing,HUO Yujia,FANG Shuhao,et?al. Study on the reasonable stratum of high-drainage roadway with roof strike of fully-mechanized working face in Sijiazhuang Mine[J].Coal Science and Technology,2021,49(1) :234-239.[5]?李大冬,李慧德.高瓦斯矿井综采工作面低抽巷布置及抽采效果分析[J].煤,2023,32(01):25-27,31.LI Dadong, LI Huide. Analysis on the layout of low extraction roadways and extraction effects in fully mechanized mining faces of high gas mines [J]. Coal, 2023, 32(1): 25-27, 31.[6]郭建行.近距离高瓦斯煤层群首采层“一面四巷”瓦斯治理技术[J].煤炭工程,2023,55(5):70-75.GUO Jianhang. Gas control technology of “four lanes for one face” in the first mining seam of contiguous high gas coal seams group [J] . Coal Engineering,2023,55(5):70-75.[7]高宏,杨宏伟.高瓦斯矿井高、底抽巷联合抽采瓦斯技术研究[J].工矿自动化,2021,47(1):100-106.GAO Hong, YANG Hongwei. Research on the combined gas extraction technology of high and low extraction roadways in high gas mines [J]. Industry and Mine Automation, 2021, 47(1): 100-106.[8]郭文兵,王云广.基于绿色开采的高强度开采定义及其指标体系研究[J].采矿与安全工程学报,2017,34(4) :616-623.GUO Wenbing, WANG Yunguang. The definition of high-intensity mining based on green coal mining and its index system[J] . Journal of Mining & Safety Engineering, 2017, 34(4) :616-623.[9]吕 鲲. 余吾煤矿井下矸石巷道充填技术研究与应用[J].煤炭与化工, 2024, 47(1): 8-11. LV Kun. Research and application of filling technology for underground gangue roadway in Yuwu Coal Mine. CCI, 2024, 47(1) : 8-11.[10]肖同强,李化敏,涂兴子,等. 岩巷综掘五位一体快速成巷技术研究[J].煤炭科学技术,2016,44(12) :1-7.XIAO Tongqiang, LI Huamin, TU Xingzi, et al.Study on five-in-one rapid excavation technology of rock roadway with fully-mechanized method [J]. Coal Science and Technology, 2016, 44( 12) : 1-7.[11]刘文朝.高瓦斯矿井综放工作面瓦斯综合治理技术应用研究[J].煤炭工程,2009(3): 74-76.LIU Wenzhao. Research on the Application of Gas Comprehensive Control Technology in Fully-mechanized Caving Faces of High-Gas Mines [J]. Coal Engineering, 2009(3):74-76.[12]杨 磊,洪克宽,逄 宁,等. 工作面“U+L”型通风系统向“U+U”型改造的研究[J]. 中国矿业大学学报, 2013, 42(6): 934-940.YANG Lei, HONG Kekuan, PANG Ning, et al. Study on the transformation of the "U+L" ventilation system to the "U+U" type in the working face[J]. Journal of China University of Mining and Technology, 2013, 42(6): 934-940.[13]张 剑. 强烈动压影响瓦排巷围岩控制技术研究[J].煤炭工程, 2013, 45 (2) : 76-79.ZHANG Jian. Study on surrounding rock control technology of gas drainage roadway under strong dynamic pressure influence [J]. Coal Engineering, 2013, 45(2): 76-79.[14]汪占领. 大采高综采工作面20 m煤柱二次复用巷道矿压规律实测研究[J]. 煤矿开采, 2017, 22 (2) : 72-77.WANG Zhanling. Field measurement study on mine pressure law of 20m coal pillar secondary reused roadway in large mining height fully-mechanized mining face [J]. Coal Mining, 2017, 22(2): 72-77.[15]王 越,廉常军,神文龙. 强动压巷道高阻剪切让压控制技术[J]. 煤炭工程, 2014, 46 (9) : 43-45, 48.WANG Yue, LIAN Changjun, SHEN Wenlong. High-resistance shear yielding control technology for strong dynamic pressure roadways [J]. Coal Engineering, 2014, 46(9): 43-45, 48.[16]贾 航.大埋深松软煤层复用巷道留设技术研究[J].山东煤炭科技,2023,41(4) :54-57.JIA Hang. Study on the Retaining Technology of reused roadways in deeply buried soft coal seams [J]. Shandong Coal Science and Technology, 2023, 41(4): 54-57.[17]熊祖强,张建锋.大采高工作面复用巷道二次注浆加固技术[J].煤炭工程,2016,(8) :46-49.XIONG Zuqiang, ZHANG Jianfeng. Secondary grouting reinforcement technology for reused roadways in large mining height working faces [J]. Coal Engineering, 2016(8): 46-49.[18]秦冬冬,陈旭阳,王旭锋,等. 浸水含瓦斯抽采钻孔煤柱稳定性研究及控制[J]. 矿业安全与环保,2024,51(3):116-125.QIN Dongdong, CHEN Xuyang, WANG Xufeng,et al. Study on the stability and control of coal pillars in water-bearing gas extraction boreholes [J] . Mining Safety & Environmental Protection,2024,51(3) :116-125.[19]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.[20]王文明. 寺河矿西采区大采高工作面合理煤柱尺寸留设研究[J]. 采矿与岩层控制工程学报,2013(6):59-62.WANG Wenming. Research on the rational coal pillar size setting for large mining height working faces in the western mining area of Sihe Mine [J]. Journal of Mining and Strata Control Engineering, 2013(6): 59-62. |