[1] 潘一山. 冲击地压发生和破坏过程研究[D]. 北京: 清华大学, 1999.PAN Yishan. Study on rockburst initiation and failure propagation[D]. Beijing: Tsinghua University, 1999.[2] 齐庆新,窦林名. 冲击地压理论与技术[M]. 徐州: 中国矿业大学出版社, 2008. QI Qingxin, DOU Linming. Theory and Technology of Coal Bump[M]. Xuzhou: China University of Mining and Technology Press, 2008.[3] Cai W, Dou L M, Li Z L, et al. Mechanical initiation and propagation mechanism of a thrust fault: a case study of the Yima section of the Xiashi-Yima thrust (north side of the eastern Qinling orogen, China)[J]. Rock Mechanics and Rock Engineering, 2015, 48(5): 1927-1945.[4] 姜耀东, 王涛, 陈涛, 等.“两硬”条件正断层影响下的冲击地压发生规律研究[J]. 岩石力学与工程学报, 2013, 32(S2): 3712-3718.JIANG Yaodong, WANG Tao, CHEN Tao, et al. Features of coal bumps influenced by normal faults in coal mining with hard roof and hard coal[J]. Chinese Journal of Rock Mechanics and Engineering, 2013, 32(S2): 3712-3718.[5] 吕进国, 南存全, 张寅, 等. 义马煤田临近逆冲断层开采冲击地压发生机理[J]. 采矿与安全工程学报, 2018, 35(03): 567-574.LV Jinguo, NAN Cunquan, ZHANG Yin, et al. Coal bump mechanism in Yima coalfield mining near thrust fault[J]. Journal of Mining and Safety Engineering, 2018, 35(03): 567-574.[6] 王宏伟, 邓代新, 姜耀东, 等. 断层构造失稳突变诱发冲击地压机制研究[J]. 煤炭科学技术, 2018, 46(07): 165-170.WANG Hongwei, DENG Daixin, JIANG Yaodong, et al. Study on mechanism of rock burst induced by sudden instability of fault structures[J]. Coal Science and Technology, 2018, 46(07): 165-170.[7] 吕进国, 姜耀东, 李守国, 等. 巨厚坚硬顶板条件下断层诱冲特征及机制[J]. 煤炭学报, 2014, 39(10): 1961-1969.LV Jinguo, JIANG Yaodong, LI Shouguo, et al. Characteristics and mechanism research of coal bumps induced by faults based on extra thick and hard roof[J]. Journal of China Coal Society, 2014, 39(10): 1961-1969.[8] 王涛, 姜耀东, 赵毅鑫, 等. 断层活化与煤岩冲击失稳规律的实验研究[J]. 采矿与安全工程学报, 2014, 31(02): 180-186.WANG Tao, JIANG Yaodong, ZHAO Yixin, et al. Experimental research on fault reactivation and relating coal bumps[J]. Journal of Mining and Safety Engineering, 2014, 31(02): 180-186.[9] 李振雷, 窦林名, 蔡武, 等. 深部厚煤层断层煤柱型冲击矿压机制研究[J]. 岩石力学与工程学报, 2013, 32(02): 333-342. LI Zhenlei, DOU Linming, CAI Wu, et al. Fault-pillar induced rock burst mechanism of thick coal seam in deep mining[J]. Chinese Journal of Rock Mechanics and Engineering, 2013, 32(02): 333-342.[10] 姜福兴, 魏全德, 王存文, 等.巨厚砾岩与逆冲断层控制型特厚煤层冲击地压机理分析[J]. 煤炭学报, 2014, 39(07): 1191-1196.JIANG Fuxing, WEI Quande, WANG Cunwen, et al. Analysis of rock burst mechanism in extra-thick coal seam controlled by huge thick conglomerate and thrust fault [J]. Journal of China Coal Society, 2014, 39(07): 1191-1196.[11] 王爱文, 潘一山, 李忠华, 等. 断层作用下深部开采诱发冲击地压相似试验研究[J]. 岩土力学, 2014, 35(09): 2486-2492.WANG Aiwen, PAN Yishan, LI Zhonghua, et al. Similar experimental study of rockburst induced by mining deep coal seam under fault action[J]. Rock and Soil Mechanics, 2014, 35(09): 2486-2492.[12] 曹明辉, 刘钒, 王同旭. 断层活化过程及煤柱失稳机理的数值模拟研究[J]. 山东科技大学学报(自然科学版), 2020, 39(02): 61-68.CAO Minghui, LIU Fan, WANG Tongxu. Numerical simulation study of fault activation process and coal pillar instability mechanism[J]. Journal of Shandong University of Science and Technology (Natural Science), 2020, 39(02): 61-68.[13] GB/T 25217. 12-2019, 冲击地压测定、监测与防治方法 第12部分: 开采保护层防治方法[S]. 北京:国家市场监督管理总局,2019.GB/T 25217. 12-2019, Methods for test, monitoring and prevention of rock burst—Part 12: Prevention method of protective seam mining[S]. Beijing: State Administration for Market Regulation, 2019.[14] 康红普, 姜铁明, 张晓, 等.晋城矿区地应力场研究及应用[J].岩石力学与工程学报, 2009, 28(01): 1-8.KANG Hongpu, JIANG Tieming, ZHANG Xiao, et al. Research on in-situ stress field in Jincheng mining area and its application[J]. Chinese Journal of Rock Mechanics and Engineering, 2009, 28(01): 1-8.[15] 李志华, 窦林名, 陆振裕, 等. 采动诱发断层滑移失稳的研究[J]. 采矿与安全工程学报, 2010, 27(04): 499-504.LI Zhihua, DOU Linming, LU Zhenyu, et al. Study of the fault slide destabilization induced by coal mining[J]. Journal of Mining and Safety Engineering, 2010, 27(04): 499-504.[16] 姚强岭, 王夫榕, 马守龙, 等. 正断层区段异形煤柱护巷矿压显现特征及控制[J]. 采矿与安全工程学报, 2022, 39(06): 1095-1107. YAO Qiangling, WANG Furong, MA Shoulong, et al. Characteristics and control of strong underground pressure appear under irregular section normal fault roadway pillar[J]. Journal of Mining and Safety Engineering, 2022, 39(06): 1095-1107.[17] 顾士坦, 刘政, 蒋邦友, 等. 横向切割工作面断层保护煤柱尺寸确定[J]. 矿业研究与开发, 2019, 39(09): 16-20. GU Shitan, LIU Zheng, JIANG Bangyou, et al. Dimension determination of fault protective coal pillar in transverse cutting face[J]. Mining Research and Development, 2019, 39(09): 16-20.[18] GB/T 25217. 13-2019, 冲击地压测定、监测与防治方法 第13部分:顶板深孔爆破防治方法[S]. 北京:国家市场监督管理总局,2019.GB/T 25217. 13-2019, Methods for test, monitoring and prevention of rock burst—Part 13: Prevention method of deep-hole blasting in roof[S]. Beijing: State Administration for Market Regulation, 2019.[19] 夏永学,潘俊锋,谢非,等.特厚煤层大巷复合构造区重复冲击致灾机制及控制技术[J].岩石力学与工程学报,2022,41(11):2199-2209.XIA Yongxue, PAN Junfeng, XIE Fei, et al. Disaster mechanism and control technology of large roadway group with repeated impact in extra-thick coal seam[J]. Chinese Journal of Rock Mechanics and Engineering, 2022, 41(11): 2199-2209.[20] 王爱文, 潘一山, 齐庆新, 等. 煤矿冲击地压巷道三级吸能支护的强度计算方法[J]. 煤炭学报, 2020, 45(09): 3087-3095.WANG Aiwen, PAN Yishan, QI Qingxin, et al. Strength calculation method of three-level energy absorption support in rockburst roadways for coal mines[J]. Journal of China Coal Society, 2020, 45(09): 3087-3095.[21]王素娜,孙小岩. F16逆冲断层的控煤模式及对煤层赋存的影响[J].煤炭技术,2015,34(12):161-164.WANG Suna, SUN Xiaoyan. Coal-controlled Mode of F16 Thrust Fault and Impact of Coal Seam Occurrence [J]. Coal Technology, 2015, 34(12): 161-164.[22]姚能旺.义马煤田F16逆冲断层的形成机理及其控煤作用[D].徐州:中国矿业大学,2014.YAO Nengwang. Formation Mechanism and Coal Spatial Feature-control of F16 Thrust Fault in Yima Coalfield[D]. Xuzhou: China University of Mining and Technology, 2014.[23]张宁博,单仁亮,赵善坤,等. 卸载条件下逆冲断层滑移实验研究[J]. 煤炭学报,2021,46(12): 3794-3804.ZHANG Ningbo, SHAN Renliang, ZHAO Shankun et al. Experiment of thrust fault slipping under unloading[J]. Journal of China Coal Society, 2021, 46(12): 3794-3804.[24]张宁博.断层冲击地压发生机制与工程实践[D]. 北京:煤炭科学研究总院,2014.ZHANG Ningbo. Mechanism and engineering practice of fault rockburst[D]. Beijing: China Coal Research Institute, 2014. |