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| Analysis of reasonable misalignment optimization in collaborative mining of upper and lower coal seam working face |
| Dang Zhengwei1, Zhang Ning1, Miao Xing1, Liu Zenghui2, Jiang Hailong2, Li Haonan2 |
1. Jiaojiazhai Mine, Xuangang Coal and Electricity Company, Xinzhou 034000, China;
2. School of Mining Engineering, Anhui University of Science and Technology, Huainan 232001, China |
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Abstract To study the safe offset of coordinated co-mining of upper and lower coal seam working faces with large coal seam spacing and not belonging to the category of close-range coal seams, taking the co-mining working faces of No. 5 and No. 2 coal seams in Jiaojiazhai Coal Mine as the research object, the relationship between the spacing of upper and lower coal seams and the "three belts" of the collaborative mining roof was analyzed, and three structural models were proposed; The stress disturbance of co-mining in the working faces of the upper and lower coal seams was studied. The heights of the sag zone and fracture zone in the mining of the working faces of the upper and lower coal seams were theoretically calculated, and the reasonable strike offset of the co-mining working face was determined. The FLAC3D numerical calculation model was established to analyze the stress distribution and displacement law of the surrounding rock under the conditions of dislocation distances of 10, 40, 70, 100, 130 and 160m. The research results show that: The distance between the No. 5 coal seam and the No. 2 coal seam, which is 72.4m, is greater than the collapse zone of the working face of the No. 5 coal seam and smaller than its fracture zone. Theoretical calculation shows that the reasonable offset distance for the coordinated simultaneous mining of coal seams No. 5 and No. 2 is 90 meters. As the offset distance between the upper and lower coal seam working faces decreases, the peak value of the advanced support prepressure in the lower coal seam working face increases.
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| [ 1 ] 高宏伟. 基于减压区开采理论的浅埋煤层群同采工作面合理错距研究[ J ]. 陕西煤炭,2025,44( 1 ):10 - 13.
[ 2 ] 毛华晋. 近距离下层煤开采区段煤柱合理错距研究[ J ]. 煤炭工程,2024,56( 5 ):24 - 30.
[ 3 ] 孙学阳,卢明皎,李 成,等. 榆神矿区双煤层开采错距方案优化数值模拟[ J ]. 煤矿安全,2021,52( 2 ):182 - 187,193.
[ 4 ] 宋高峰,黄 鹏,昝明惠,等. 近距离煤层群同采工作面合理错距确定及覆岩破坏特征研究[ J ]. 煤炭工程,2024,56( 6 ):1 - 7.
[ 5 ] 张 杰,孙建平,何义峰,等. 近距离煤层底板应力分布规律及巷道布置研究[ J ]. 煤炭科学技术,2024,52( 8 ):11 - 22.
[ 6 ] 李胜利. 基于稳压区理论近距离上下煤层协同开采错距研究[ J ]. 煤炭科学技术,2022,50( S2 ):44 - 49.
[ 7 ] 任兴云,郝兵元,贺福帅,等. 基于沉陷预测的上下煤层协同开采工作面走向错距研究[ J ]. 煤炭科学技术,2022,50( 12 ):102 - 108.
[ 8 ] 彭志妍,查文华. 极近距离煤层同采工作面错距优化研究[ J ]. 工矿自动化,2020,46( 7 ):94 - 99.
[ 9 ] 郭军斌,秦兴林. 近距离煤层上下联合开采回采工作面合理错距研究[ J ]. 煤炭技术,2025,44( 5 ):78 - 81.
[ 10 ] 张国建,付连龙,郭广礼,等. 营盘壕煤矿深部多煤层开采地表移动变形规律及最优错距研究[ J ]. 煤矿安全,2024,55( 5 ):35 - 50. |
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