| [1] 臧英新,陈威.二次沿空巷道留巷支护方式及围岩变形规律研究[J].煤炭科学技术,2012,40(03):17-19+45.ZANG Yingxin, CHEN Wei. Research on Support Method and Surrounding Rock Deformation Law of Secondary Gateway Retained Along Goaf[J].Coal Science and Technology,2012,40(03):17-19+45.[2] 李迎富.二次沿空留巷围岩稳定性控制机理研究[D].淮南:安徽理工大学,2012.[3] 李国栋.二次沿空留巷围岩变形机理及支护技术研究[D].重庆:重庆大学,2016.[4] 苏超,弓培林,康红普,等.深井临空高应力巷道切顶卸压机理研究[J].采矿与安全工程学报,2020,37(06):1104-1113.SU Chao, GONG Peilin, KANG Hongpu, et al. Mechanism of roof cutting and pressure relief in gob-side and high-stress roadway in deep coal mine[J]. Journal of Mining & Safety Engineering,2020,37(06):1104-1113.[5] 耿铭,孙静.厚硬顶板悬顶致灾机理及切顶控制技术研究[J].工矿自动化,2024,50(11):132-141.GENG Ming, SUN Jing. Study on disaster mechanism of thick and hard overhanging roof and top cutting control technology[J]. Journal of Mine Automation,2024,50(11):132-141.[6] 高晓进,何杰,张震,等.直覆硬厚顶板临空巷强动载矿压显现及多层次卸压防控技术研究[J/OL].煤炭学报,1-15[2025-10-29].https://doi.org/10.13225/j.cnki.jccs.2024.1393.Gao Xiaojin, He Jie, Zhang Zhen, et al. Strong dynamic mining pressure behavior in gob-side roadways and multi-levelpressure relief prevention and control of thick-hard and overlying roof[J/OL]. Journal of China Coal Society,1-15[2025-10-29].https://doi.org/10.13225/j.cnki.jccs.2024.1393.[7] 来兴平,徐李臻,曹建涛,等.采动影响下临空巷道小煤柱失稳特征与调控方法[J].煤炭科学技术,2025,53(01):39-53.LAI Xingping, XU Lizhen, CAO Jiantao, et al. Instability characteristics and control methods of small coal pillar in open roadway under the influence of mining[J]. Coal Science and Technology,2025,53(1):39?53.[8] 张自政,柏建彪,陈勇,等.浅孔爆破机制及其在厚层坚硬顶板沿空留巷中的应用[J].岩石力学与工程学报,2016,35(S1):3008-3017.ZHANG Zizheng, BAI Jianbiao, CHEN Yong, et al. Shallow-hole blasting mechanism and its application for gob-side entry retainingwith thick and hard roof[J]. Chinese Journal of Rock Mechanics and Engineering,2016,35(S1):3008-3017.[9] 阚甲广,武精科,张农,等.二次沿空留巷围岩结构稳定性与控制技术[J].采矿与安全工程学报,2018,35(05):877-884.KAN Jiaguang, WU Jingke, ZHANG Nong, et al. Structure stability analysis and control technology ofsurrounding rock of the secondary gob-side entry retaining[J]. Journal of Mining & Safety Engineering,2018,35(05):877-884.[10] 赵善坤,申付新,贺光会,等.厚煤层巷旁充填沿空留巷切顶卸压机制与防控技术[J].煤炭科学技术,2025,53(08):102-114.ZHAO Shankun, SHEN Fuxin, HE Guanghui, et al. Mechanism and control technology of roof cutting induced pressure relief in gob-side entry retaining with roadside backfill under thick coal seam conditions[J]. Coal Science and Technology,2025,53(8):102?114.[11] 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(01):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(01):16-44.[12] 赵腾飞,种阳,马国伟.特厚煤层沿空掘巷煤柱塑性区宽度研究[J].中国矿业,2023,32(01):107-111.ZHAO Tengfei, CHONG Yang, MA Guowei. Study on the width of plastic zone of coal pillar along goaf in extrar-thick coal seam[J]. China MiningMagazine,2023,32(1):107-111.[13] 孙方,朱乐章,赵宏志,等.中厚煤层沿空巷道预应力锚注喷联合控制技术及应用[J].煤炭工程,2025,57(07):37-44.SUN Fang, ZHU Lezhang, ZHAO Hongzhi, et al. Combined control technology of prestressed anchor-grout-shotcrete for gob-side entry of medium-thick coal seams and the application [J]. Coal Engineering,2025,57(07):37-44.[14] 李迎富,华心祝.二次沿空留巷关键块的稳定性及巷旁充填体宽度确定[J].采矿与安全工程学报,2012,29(06):783-789.LI Yingfu, HUA Xinzhu. The Stability of Key Block and Calculating the Width of Roadside Backfill in a Secondary Gob-Side Entry Retaining [J]. Journal of Mining and Safety Engineering,2012,29(06):783-789.[15] 秦子晗,李福宏,张磊,等.沿空工作面厚硬顶板水力化卸压技术体系构建及应用[J].煤炭工程,2025,57(10):21-28.QIN Zihan, LI Fuhong, ZHANG Lei, et al. Establishment and application of hydraulic unloading technology system for gob-side working faces with thick and hard roof [J]. Coal Engineering, 2025, 57(10): 21-28.[16] 佘永明.浅埋厚硬顶板沿空留巷“支-卸”协同围岩控制技术[J].中国矿业,2023,32(12):140-146.SHE Yongming. A “support and pressure relief” collaborative strata control technology for gob-side entry retaining with shallow buried thick hard roof[J]. China Mining Magazine,2023,32(12):140-146. |