[1] |
鞠金峰,许家林,李全生,等. 我国水体下保水采煤技术研究进展[J]. 煤炭科学技术,2018,46(1):12-19.JU Jinfeng,XU Jialin,LI Quansheng,et al. Progress of water-preserved coal mining under water in China[J]. Coal Science and Technology,2018,46(1):12-19.
|
[2] |
许家林.岩层采动裂隙演化规律与应用[M]. 徐州: 中国矿业大学出版社,2016.
|
[3] |
国家煤炭工业局制定. 建筑物、水体、铁路及主要井巷煤柱留设与压煤开采规范[S]. 北京:煤炭工业出版社, 2017. State Bureau of Coal Industry. Regulations of buildings, water, railway and main well lane leaving coal pillar and press coal mining[S].Beijing: China Coal Industry Publishing House, 2017.
|
[4] |
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(5):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(5):762-769.
|
[5] |
周泽, 赵维生, 朱川曲,等.基于塑性铰理论的导水裂隙带发育高度预判[J]. 地下空间与工程学报,2018,14(5): 1305-1312.Zhou Ze, Zhou Weisheng, Zhu Chuanqu, et al. Prediction of Water Flowing Fracture Zone Height Based on the Plastic Hinge Theory [J]. Chinese Journal of Underground Space and Engineering, 2018,14(5): 1305-1312.
|
[6] |
柴华彬, 张俊鹏, 严超. 基于 GA-SVR 的采动覆岩导水裂隙带高度预测[J]. 采矿与安全工程学报, 2018,35(2): 0359-0365.CHAI Huabin, ZHANG Junpeng, YAN Chao. Prediction of water-flowing height in fractured zone of overburden strata based on GA-SVR [J]. Journal of Mining & Safety Engineering, 2018,35(2): 0359-0365.
|
[7] |
赵兵朝,刘樟荣,同超, 等. 覆岩导水裂缝带高度与开采参数的关系研究[J]. 采矿与安全工程学报, 2015, 32(4):634-638.ZHAO Bingchao, LIU Zhangrong, TONG Chao, et al. Relation between height of water flowing fractured zone and mining parameters [J]. Journal of Mining and Safety Engineering, 2015, 32(4):634-638.
|
[8] |
刘世奇,许延春,郭文砚,等.近距离多煤层重复采动“两带”高度预计方法改进[J].煤炭科学技术,2018,46(5):74-80.LIU Shiqi, XU Yanchun, GUO Wenyan, et al. Improvement of prediction method for heights of caving zone and fractured zone induced by repeated mining of contiguous coal seams [J]. Coal Science and Technology, 2018, 46(5): 74-80.
|
[9] |
张建民,张凯,曹志国,等.基于采动-爆裂模型的导水裂隙带高度计算方法[J].煤炭学报,2017,42(6): 1557-1564.Zhang Jianmin,Zhang Kai,Cao Zhiguo,et al.Study on mining-bursting simulation and height calculation method for conducting-water fractured zone[J].Journal of China Coal Society,2017,42(6): 1557-1564.
|
[10] |
文学宽, 康永华, 耿德庸. MT-T 865-2000, 导水裂缝带高度的钻孔冲洗液漏失量观测方法[S]. 北京,国家煤炭工业局, 2000.WEN Xuekuan, KANG Yonghua, GENG Deyong. MT-T 865-2000, Measuring method on height of water flowing fractured zone using loses of drilling fluid[S]. Beijing, State Bureau of Coal Industry, 2000.
|
[11] |
李超峰, 刘英锋, 李抗抗. 导水裂隙带高度井下仰孔探测装置改进及应用[J]. 煤炭科学技术, 2018,46(5): 0166-0172.LI Chaofeng, LIU Yingfeng, LI Kangkang. Equipment improvement and application on determining height of water flowing fractured zone in upward slant hole [J]. Coal Science and Technology, 2018,46(5): 0166-0172.
|
[12] |
王 桦,程 桦,刘盛东. 基于并行电阻率法的导水裂隙带适时探测技术研究[J]. 煤矿安全,2007,(7): 1-9.Wang Hua,Cheng Hua, Liu Shengdong. Research on timely prospecting technology of water flowing fracture zone by parallel electrical resistivity method[J]. Safety in Coal Mine,2007,(7):1-9.
|
[13] |
吴荣新, 张卫, 张平松. 并行电法监测工作面“垮落带”岩层动态变化[J].煤炭学报, 2012,37(4):571-578.WU Rongxin, ZHANG Wei, ZHANG Pingsong. Exploration of parallel electrical technology for the dynamic variation of caving zone strata in coal face[J]. 2012,37(4):571-578.
|
[14] |
汪华君,姜福兴,成云海,等. 覆岩导水裂隙带高度的微地震( MS) 监测研究[J]. 煤炭工程,2006,(3):74-76.Wang Huajun, Jiang Fuxing, Cheng Yunhai, et al. Micro seismic (MS) monitoring research of the height of strata water fractured zone[J]. Coal Engineering,2006, (3):74-76.
|
[15] |
张丹, 张平松, 施斌, 等. 采场覆岩变形与破坏的分布式光纤监测与分析[J].岩土工程学报,2015,37(5):952-957.ZHANG Dan, ZHANG Pingsong, SHI Bin, et al. Monitoring and analysis of overburden deformation and failure using distributed fiber optic sensing[J]. Chinese Journal of Geotechnical Engineering, 2015,37(5):952-957.
|
[16] |
许家林, 王晓振, 刘文涛, 等. 覆岩主关键层位置对导水裂隙带高度的影响[J]. 岩石力学与工程学报, 2009, 28(2):380-385.XU Jialin, WANG Xiaozhen, LIU Wentao, et al. Effects of primary key stratum location on height of water flowing fracture zone [J]. Chinese Journal of Rock Mechanics and Engineering, 2009, 28(2):380-385.
|
[17] |
王晓振,许家林,朱卫兵. 主关键层结构稳定性对导水裂隙演化的影响研究[J]. 煤炭学报,2012,37(4):606-612.WANG Xiaozhen, XU Jialin, ZHU Weibing. Influence of primary key stratum structure stability on evolution of water flowing fracture [J].Journal of China Coal Society,2012,37(4): 606-612.
|