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李官集铁矿采场动态地压监测及数值分析 被引量:3
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作者 李正胜 李洪军 《金属矿山》 CAS 北大核心 2015年第3期58-62,共5页
针对李官集铁矿点柱式分层充填法的特点,按照矿山实际的开采和充填步骤,对采场中的间柱、点柱、充填体和上下盘围岩的应力变化进行动态监测和分析,并考虑矿体中优势结构面的影响,运用3DEC构建含有优势结构面的岩体模型,结合地压的实际... 针对李官集铁矿点柱式分层充填法的特点,按照矿山实际的开采和充填步骤,对采场中的间柱、点柱、充填体和上下盘围岩的应力变化进行动态监测和分析,并考虑矿体中优势结构面的影响,运用3DEC构建含有优势结构面的岩体模型,结合地压的实际监测变化量和数值模拟得到的地压值匹配,分析了点柱式分层充填法开采过程李官集铁矿的地压变化规律。结果显示:1开采初期,矿柱和围岩共同支撑上部载荷,随着开挖高度的增加,应力由点柱逐渐向围岩转移,上部载荷主要由围岩体支撑;2应力在上下盘岩体之间随开采向上交替变化:开挖层应力增加,回填层应力局部恢复,扰动层应力释放。在同一点柱间地压呈现分层转移规律,并随开挖进行循环往复。 展开更多
关键词 点柱法 分层充填 动态地压 数值分析 地压规律
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深部大矿段采动环境监测及地压动态调控技术 被引量:4
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作者 秦秀山 陈何 +2 位作者 刘建坡 曾宪涛 詹光 《中国有色金属学报》 EI CAS CSCD 北大核心 2022年第12期3871-3882,共12页
针对深井开采中高应力、强扰动、难调控等行业共性难题,开展深部大矿段采动地压动态调控技术研究。通过研发基于正演数值模拟和反演定位补偿的高精度微震定位技术、适用深井高温条件的智能化分布式微震监测装备以及高能量吸收支护系统,... 针对深井开采中高应力、强扰动、难调控等行业共性难题,开展深部大矿段采动地压动态调控技术研究。通过研发基于正演数值模拟和反演定位补偿的高精度微震定位技术、适用深井高温条件的智能化分布式微震监测装备以及高能量吸收支护系统,建立深部金属矿床开采过程应力转移与开采工艺参数的相关性关系模型、动力灾害安全定量预警方法,进而实现采动地压动态调控。深部大矿段采动环境监测及地压动态调控技术研究实现了基于开采环境模型−多源实测数据感知−分析与反分析判别−开采工艺调整−地压实测反馈的深井开采地压动态调控新模式,提高了矿山本质安全,可为深部规模化开采地压控制提供技术保障。 展开更多
关键词 深部大矿段开采 采动环境监测 地压动态调控 多维数据融合 一体化平台
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小庄官铁矿无底柱分段崩落法采场地压显现规律
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作者 任天贵 王辉光 +3 位作者 明士祥 高谦 王志宏 丁延棱 《有色金属》 CSCD 1993年第1期7-15,共9页
针对小官庄铁矿西区的地质和采矿条件,分别采用了采场地压的宏观调查、巷道变形收敛量测、二维弹塑性有限元分析和三维光弹性试验等手段,揭示了用无底柱分段崩落采矿法开采深埋、软弱破碎围岩和缓倾斜矿体采场的地压显现规律。利用所得... 针对小官庄铁矿西区的地质和采矿条件,分别采用了采场地压的宏观调查、巷道变形收敛量测、二维弹塑性有限元分析和三维光弹性试验等手段,揭示了用无底柱分段崩落采矿法开采深埋、软弱破碎围岩和缓倾斜矿体采场的地压显现规律。利用所得的结果,在-260m水平开采中,采取了相应的措施,有效地控制住地压,获得了成功。 展开更多
关键词 无底柱分段崩落法 地压显现规律 地压动态特征 地压的分区分带特征
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Centrifuge modeling of dynamic behavior of pile-reinforced slopes during earthquakes 被引量:5
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作者 于玉贞 邓丽军 +1 位作者 孙逊 吕禾 《Journal of Central South University》 SCIE EI CAS 2010年第5期1070-1078,共9页
A series of centrifuge model tests of sandy slopes were conducted to study the dynamic behavior of pile-reinforced slopes subjected to various motions.Time histories of accelerations,bending moments and pile earth pre... A series of centrifuge model tests of sandy slopes were conducted to study the dynamic behavior of pile-reinforced slopes subjected to various motions.Time histories of accelerations,bending moments and pile earth pressures were obtained during excitation of the adjusted El Centro earthquake and a cyclic motion.Under a realistic earthquake,the overall response of the pile-reinforced slope is lower than that of the non-reinforced slope.The histories of bending moments and dynamic earth pressures reach their maximums soon after shaking started and then remain roughly stable until the end of shaking.Maximum moments occur at the height of 3.5 m,which is the deeper section of the pile,indicating the interface between the active loading and passive resistance regions.The dynamic earth pressures above the slope base steadily increase with the increase of height of pile.For the model under cyclic input motion,response amplitudes at different locations in the slope are almost the same,indicating no significant response amplification.Both the bending moment and earth pressure increase gradually over a long period. 展开更多
关键词 EARTHQUAKE SLOPE stabilizing pile dynamic behavior centrifuge modeling earth pressure ACCELERATION bending moment
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Pseudo-dynamic active earth pressure behind retaining wall for cohesive soil backfill
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作者 马少俊 王奎华 吴文兵 《Journal of Central South University》 SCIE EI CAS 2012年第11期3298-3304,共7页
A formula was derived for the computation of seismic active earth pressure behind retaining wall using pseudo-dynamic method.This formula considered the actual dynamic effect with variation of time and propagation of ... A formula was derived for the computation of seismic active earth pressure behind retaining wall using pseudo-dynamic method.This formula considered the actual dynamic effect with variation of time and propagation of shear and primary wave velocities through the soil backfills.The influence of tension crack in the top portion of the backfill under seismic loading was investigated.The effects of wall friction angle,soil friction angle,horizontal and vertical seismic coefficients on the seismic active force were also explored.The parametric study shows that the total seismic active force increases as horizontal seismic coefficient increases,while it decreases with the increase in vertical seismic coefficient,internal friction angle and unit cohesion.The seismic active force calculated by the proposed method is larger than that calculated by previous theory. 展开更多
关键词 seismic active earth pressure pseudo-dynamic method tension cracked zone retaining wall
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