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弱化顺槽顶板降低工作面侧向应力的模拟研究 被引量:5
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作者 李东勇 康天合 赵永宏 《太原理工大学学报》 CAS 2004年第3期294-298,共5页
针对工作面瓦斯尾巷难以维护的一类工程问题,采用三维有限差分法模拟研究了弱化顺槽顶板岩层对屯兰矿综采工作面采动侧向应力分布的改善规律。研究结果表明,随着对顺槽顶板岩石弱化程度的提高,工作面侧向支承应力峰值降低,影响范围减小... 针对工作面瓦斯尾巷难以维护的一类工程问题,采用三维有限差分法模拟研究了弱化顺槽顶板岩层对屯兰矿综采工作面采动侧向应力分布的改善规律。研究结果表明,随着对顺槽顶板岩石弱化程度的提高,工作面侧向支承应力峰值降低,影响范围减小。即工作面侧向巷道的稳定性将随着对顺槽顶板硬岩层的弱化程度提高而得到有效改善。 展开更多
关键词 弱化顺槽顶板 采空区模拟 工作面侧向应力 三维数值模拟
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特殊“S”型覆岩结构冲击地压危险区划分 被引量:4
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作者 陈学华 徐鑫 吕鹏飞 《辽宁工程技术大学学报(自然科学版)》 CAS 北大核心 2017年第5期456-460,共5页
为避免济宁二号煤矿23上03工作面回采期间造成冲击地压事故,保证其安全回采.分别采用覆岩空间结构理论分析和FLAC3D数值模拟的方法探讨了23_上03工作面在不同阶段的应力分布及演变规律,并划分了冲击地压发生的危险区域.得出当23_上02和... 为避免济宁二号煤矿23上03工作面回采期间造成冲击地压事故,保证其安全回采.分别采用覆岩空间结构理论分析和FLAC3D数值模拟的方法探讨了23_上03工作面在不同阶段的应力分布及演变规律,并划分了冲击地压发生的危险区域.得出当23_上02和23_下07都采空后,23_上03工作面在推进至23_上02工作面切眼前后30m附近时,沿空顺槽靠近采空区一侧易造成冲击地压事故. 展开更多
关键词 覆岩间结构 冲击地压 数值模拟:多层 危险划分
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Dynamic disaster control of backfill mining under thick magmatic rock in one side goaf:A case study 被引量:6
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作者 XUE Yan-chao XU Tao +2 位作者 WASANTHA P L P YANG Tian-hong FU Teng-fei 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第10期3103-3117,共15页
In order to explore the control effect of backfill mining on dynamic disasters under special geological mining conditions of overlying thick magmatic rock(TMR),a three-dimensional numerical model of a panel of one sid... In order to explore the control effect of backfill mining on dynamic disasters under special geological mining conditions of overlying thick magmatic rock(TMR),a three-dimensional numerical model of a panel of one side goaf in Yangliu coal mine with double-yield backfill material constitutive model was developed.The simulation results were then compared with field monitoring data.The dynamic disaster control effect of both caving and backfill mining was analyzed in three different aspects,i.e.,displacement field,stress field and energy field.The results show that in comparison to the full caving mining method,the bearing capacity of the goaf after backfilling was enhanced,the backfill mining can effectively reduce the stress and energy accumulated in the coal/rock body,and the backfill mining eliminates the further moving space of TMR and prevents its sudden rupture.Before TMR fracture,the subsidence displacement of TMR was reduced by 65.3%,the front abutment stress of panel decreased by 9.4%on average and the high energy concentration zone around panel was also significantly reduced.Overall,the results of this study provide deeper insights into the control of dynamic disasters by backfill mining in mines. 展开更多
关键词 backfill mining thick magmatic rock one side goaf dynamic disaster numerical simulation
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