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阿舍勒铜矿开采地压风险控制与综合防治研究
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作者 龙翼 李兵磊 赵宇松 《福州大学学报(自然科学版)》 CAS 北大核心 2023年第1期125-132,共8页
针对金属矿山深度增加使得深部开采所面临的力学环境日益复杂的问题,以阿舍勒铜矿为背景开展深部开采地压灾害风险评估研究,揭示巷道围岩破坏风险分布与深部地压演化规律之间的内在联系.基于综合评估结果提出适用于阿舍勒铜矿深部地压... 针对金属矿山深度增加使得深部开采所面临的力学环境日益复杂的问题,以阿舍勒铜矿为背景开展深部开采地压灾害风险评估研究,揭示巷道围岩破坏风险分布与深部地压演化规律之间的内在联系.基于综合评估结果提出适用于阿舍勒铜矿深部地压演化规律的新型支护方案,确定适用于阿舍勒铜矿深部中段采场的最优回采顺序.综合上述3阶段研究成果,最终形成阿舍勒铜矿深部开采地压灾害防控技术. 展开更多
关键词 阿舍勒铜矿 开采地压 采场优化 风险评估 地压灾害防控
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井下多层开采地压控制管理探讨
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作者 杨志宇 宋海波 孙亚文 《中文科技期刊数据库(文摘版)工程技术》 2021年第10期282-283,共2页
如今在进行井下多层开采工作时,一旦出现地压必然会导致开采层受到巨大危害,不仅开采人员的生命安危会受到直接威胁,所有设备也可能受到严重破坏,因此,在井下多层开采过程中,相关人员必须针对地压做好控制管理工作。基于此,本文先行介... 如今在进行井下多层开采工作时,一旦出现地压必然会导致开采层受到巨大危害,不仅开采人员的生命安危会受到直接威胁,所有设备也可能受到严重破坏,因此,在井下多层开采过程中,相关人员必须针对地压做好控制管理工作。基于此,本文先行介绍了开采地压的基础概念和发生特点,继而提出控制管理井下多层开采地压的相关建议。 展开更多
关键词 井下多层 开采地压 控制管理
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浅谈冲击地压的监测预警及防治 被引量:2
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作者 李贞德 李钰 朱凯峰 《山东工业技术》 2014年第6期97-97,共1页
实践证明只要采用合理的开采技术,选择可靠的监测预警、卸压方法,严格落实各项防冲措施,足以达到冲击地压“可知、可防、可控”的防治目的。
关键词 冲击倾向性 冲击地压的预测预警 冲击地压的防治 冲击地压开采技术
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论深矿井开采出现的问题及防治措施 被引量:1
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作者 陈士恒 《中小企业管理与科技》 2013年第35期55-56,共2页
在我国深矿井开采就是指埋藏在距地表一定深度的煤炭,一般大于800米。近年来我国煤矿资源随着开采深度的越来越大,给煤矿开采带来了一系列困难,例如地热高、矿山压力显现剧烈及冲击地压、煤与瓦斯突出等。本文就煤矿深部开采条件下,结... 在我国深矿井开采就是指埋藏在距地表一定深度的煤炭,一般大于800米。近年来我国煤矿资源随着开采深度的越来越大,给煤矿开采带来了一系列困难,例如地热高、矿山压力显现剧烈及冲击地压、煤与瓦斯突出等。本文就煤矿深部开采条件下,结合深部开采环境的特点,针对地质灾害问题,把深部开采出现的主要问题做了分析,并针对这些问题采取了相应的技术措施。 展开更多
关键词 深部开采地热矿山压力显现剧烈及冲击地压煤与 瓦斯突出
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Numerical Simulation of Land Subsidence at Tanggu District in Tianjin, China 被引量:2
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作者 董国凤 张建军 +1 位作者 赵全 赵新华 《Transactions of Tianjin University》 EI CAS 2006年第6期457-462,共6页
Based on observed data from Tanggu District in Tianjin, a back-propagation neural network (BPNN) model was introduced to predict possible land subsidence due to exploitation of groundwater. According to model estimati... Based on observed data from Tanggu District in Tianjin, a back-propagation neural network (BPNN) model was introduced to predict possible land subsidence due to exploitation of groundwater. According to model estimation under various hypothetical extraction scenarios, patterns of land subsidence at Tanggu District were studied and discussed.The predicted average background land subsidence rate of Tanggu is 9.47 mm/a.The significance of contribution of aquifers to land subsidence descends in order of units Ⅳ,Ⅲ,Ⅴ,Ⅱ.Land subsidence tends to deteriorate with the increase in total extraction rate. 展开更多
关键词 groundwater exploitation confined aquifer land subsidence neural network Tanggu District
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Geotechnical characterization of red shale and its indication for ground control in deep underground mining 被引量:5
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作者 WANG Dong-yi LI Xi-bing +3 位作者 PENG Kang MA Chun-de ZHANG Zhen-yu LIU Xiao-qian 《Journal of Central South University》 SCIE EI CAS CSCD 2018年第12期2979-2991,共13页
Geotechnical properties of red shale encountered in deep underground mining were characterized on both laboratory and field scale to reveal its unfavorably in geoenvironment.Its constituents,microstructure,strength pr... Geotechnical properties of red shale encountered in deep underground mining were characterized on both laboratory and field scale to reveal its unfavorably in geoenvironment.Its constituents,microstructure,strength properties and water-weakening properties were investigated.In situ stress environment and mining-induced fractured damage zone after excavation were studied to reveal the instability mechanism.The results show that red shale contains swelling and loose clayey minerals as interstitial filling material,producing low shear strength of microstructure and making it vulnerable to water.Macroscopically,a U-shaped curve of uniaxial compressive strength(UCS)exists with the increase of the angle between macro weakness plane and the horizon.However,its tensile strength reduced monotonically with this angle.While immersed in water for72h,its UCS reduced by91.9%comparing to the natural state.Field sonic tests reveal that an asymmetrical geometrical profile of fractured damage zone of gateroad was identified due to geological bedding plane and detailed gateroad layout with regards to the direction of major principle stress.Therefore,red shale is a kind of engineering soft rock.For ground control in underground mining or similar applications,water inflow within several hours of excavation must strictly be prevented and energy adsorbing rock bolt is recommended,especially in large deformation part of gateroad. 展开更多
关键词 red shale soft rock deep mining geotechnical characterization ground control
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Effects of gully terrain on stress field distribution and ground pressure behavior in shallow seam mining 被引量:7
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作者 Li Jianwei Liu Changyou Zhao Tong 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2016年第2期255-260,共6页
This study proposes a novel approach to study stress field distribution and overlying ground pressure behavior in shallow seam mining in gully terrain.This approach combines numerical simulations and field tests based... This study proposes a novel approach to study stress field distribution and overlying ground pressure behavior in shallow seam mining in gully terrain.This approach combines numerical simulations and field tests based on the conditions of gully terrain in the Chuancao Gedan Mine.The effects of gully terrain on the in situ stress field of coal beds can be identified by the ratio of self-weight stress to vertical stress(η) at the location corresponding to the maximum vertical stress.Based on the function η =j(h),the effect of gully terrain on the stress field of overlying strata of the entire field can be characterized as a significantly affected area,moderately affected area,or non-affected area.Working face 6106 in the Chuancao Gedan Mine had a coal bed Jepth <80 m and was located in what was identified as a significantly affected area.Hence,mining may cause sliding of the gully slope and increased loading(including significant dynamic loading) on the roof strata.Field tests suggest that significant dynamic pressures were observed at the body and foot of the gully slope,and that dynamic loadings were observed upslope of the working face expansion,provided that the expanding direction of the working face is parallel to the gully. 展开更多
关键词 Gully terrain Shallow seam Stress field Slope motion Ground pressure behavior
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Gas seepage equation of deep mined coal seams and its application 被引量:30
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作者 HU Guo-zhong WANG Hong-tu TAN Hai-xiang FAN Xiao-gang YUAN Zhi-gang 《Journal of China University of Mining and Technology》 EI 2008年第4期483-487,共5页
In order to obtain a gas seepage law of deep mined coal seams, according to the properties of coalbed methane seepage in in-situ stress and geothermal temperature fields, the gas seepage equation of deep mined coal se... In order to obtain a gas seepage law of deep mined coal seams, according to the properties of coalbed methane seepage in in-situ stress and geothermal temperature fields, the gas seepage equation of deep mined coal seams with the Klinkenberg effect was obtained by confirming the coatbed methane permeability in in-situ stress and geothermal temperature fields. Aimed at the condition in which the coal seams have or do not have an outcrop and outlet on the ground, the application of the gas seepage equation of deep mined coal seams in in-situ stress and geothermal temperature fields on the gas pressure calculation of deep mined coal seams was investigated. The comparison between calculated and measured results indicates that the calculation method of gas pressure, based on the gas seepage equation of deep mined coal seams in in-situ stress and geothermal temperature fields can accu- rately be identical with the measured values and theoretically perfect the calculation method of gas pressure of deep mined coal seams. 展开更多
关键词 deep mining in-situ stress field geothermal temperature field gas seepage equation of coal seam gas pressure
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Strata-pressure behavior of double-unit mining method combining fully-mechanized and mechanized coal face
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作者 Fu-Jun ZHAO Yan-Fei XU Guo-Ju WANG 《Journal of Coal Science & Engineering(China)》 2013年第4期454-461,共8页
Based on the engineering background of double-unit face mining under complicated geological conditions and the lagging fully-mechanized face surpassing the fore mechanized face of double-unit face in Zhou Yuanshan coa... Based on the engineering background of double-unit face mining under complicated geological conditions and the lagging fully-mechanized face surpassing the fore mechanized face of double-unit face in Zhou Yuanshan coal mine, strata-pressure behavior in the process was analyzed based on FLAC3D and on-site measurement. The results show that the stress concentration factor of superposition abutment pressure and the alternate distance of double-unit face are meeting gauss function, the relationship between the depth of stress concentration point and alternate distance also meets gaussian function. When the alternate distance is larger than 24 m, the superimposition of pilot support pressure in the double-unit face is weak. When the alternate distance is more than 12-15 m, the changes of the roof subsidence coefficient and the depth of stress con- centration point are stabilized; when the alternate distance is 3-6 m, the fore working face end is in the greatest impact area of superposition abutment pressure, this area should be avoided in determining the reasonable alternate distance. 展开更多
关键词 double-unit face alternate distance superposition abutment pressure stress concentration factor roof subsidencecoefficient
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Dynamic effects of high-pressure pulsed water jet in low-permeability coal seams 被引量:1
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作者 LI Xiao-hong ZHOU Dong-ping LU Yi-yu KANG Yong ZHAO Yu WANG Xiao-chuan 《Journal of Coal Science & Engineering(China)》 2009年第3期284-288,共5页
Mine gas extraction in China is difficult due to the characteristics such as micro-porosity,low-permeability and high adsorption of coal seams.The pulsed mechanismof a high-pressure pulsed water jet was studied throug... Mine gas extraction in China is difficult due to the characteristics such as micro-porosity,low-permeability and high adsorption of coal seams.The pulsed mechanismof a high-pressure pulsed water jet was studied through theoretical analysis,experimentand field measurement.The results show that high-pressure pulsed water jet has threedynamic properties.What's more,the three dynamic effects can be found in low-permeabilitycoal seams.A new pulsed water jet with 200-1 000 Hz oscillation frequency andpeak pressure 2.5 times than average pressure was introduced.During bubble collapsing,sound vibration and instantaneous high pressures over 100 MPa enhanced the cuttingability of the high-pressure jet.Through high-pressure pulsed water jet drilling and slotting,the exposure area of coal bodies was greatly enlarged and pressure of the coal seamsrapidly decreased.Therefore,the permeability of coal seams was improved and gas absorptionrate also decreased.Application results show that gas adsorption rate decreasedby 30%-40%and the penetrability coefficient increased 100 times.This proves that high-pressurepulsed water is more efficient than other conventional methods. 展开更多
关键词 high-pressure pulsed water jet gas desorption penetrability dynamic effects
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Study on the characteristics of ground pressure behaviors in working face with great mining height at different advance speeds by similarity model experiment
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作者 华心祝 张金龙 谢广祥 《Journal of Coal Science & Engineering(China)》 2007年第1期28-31,共4页
Presently most of research results on strata behaviors were concluded under the normal (moderate) advance rate conditions. Comparing with normal advance rate, fast advance rate and slow advance rate may cause some n... Presently most of research results on strata behaviors were concluded under the normal (moderate) advance rate conditions. Comparing with normal advance rate, fast advance rate and slow advance rate may cause some new changes of strata behaviors. The characteristics of ground pressure behaviors in working face with great mining height at different forward speeds were studied by similarity model experiment in laboratory. Its conclusion provides a theoretic basis for ground pressure controlling. 展开更多
关键词 similarity simulation advance rate working face with great mining height ground pressure
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An analysis on the effect of mining height and floor lithology on pressure relief of upper protective layers
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作者 Xu-chao HUANG Dong-ling SUN Kang-wu FENG 《Journal of Coal Science & Engineering(China)》 2013年第1期46-50,共5页
In order to understand the effect of mining height and floor lithology at the upper protective layer face on the pressure relief of protected coal seams, this paper uses a numerical simulation method to model the pres... In order to understand the effect of mining height and floor lithology at the upper protective layer face on the pressure relief of protected coal seams, this paper uses a numerical simulation method to model the pressure changes at protected coal seam during mining upper protective layer. The results show that the taller the mining height at the upper protective layer face, the greater the protection on protected coal seam due to the higher level of pressure release; the upper protective layer face with hard rock floor impedes the pressure release at the protected coal seam, which affects the overall effect of the pressure release at protected coal seam using the protective layer mining method. 展开更多
关键词 mining height floor lithology mining upper protective layer pressure relief EFFECT
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SURFACE SUBSIDENCE ANALYSES BASED ON THE PRINCIPLE OF EXPANSION AND RECONSOLIDATION OF THE BROKEN ROCK STRATA
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作者 王悦汉 缪协兴 《Journal of Coal Science & Engineering(China)》 1997年第2期1-5,共5页
The results of experimentaI studies about the characteristics of broken rock expansion and reconsolidation were briefly introduced in this paper, and the surface subsidence coefficient under critical mining conditions... The results of experimentaI studies about the characteristics of broken rock expansion and reconsolidation were briefly introduced in this paper, and the surface subsidence coefficient under critical mining conditions was also analysed based on the principle of expansion and reconsolidation of the broken rock strata, a equation to calculate the corresponding surface subsidence was finally produced. This calculation method can be used to calculate more accurately the convergence quantity of consolidated rocks in the broken zone of the working face. In addition, case analyses by using the introduced calculation method were conducted and satisfactory results were obtained. 展开更多
关键词 surface subsidence expansion on breaking rock CONSOLIDATION coefficient of surface subsidence
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3D-FSM·DDM IBEM numerical system of multi-medium
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作者 秦忠诚 刘承论 +1 位作者 赵迁乔 赵祉业 《Journal of Coal Science & Engineering(China)》 2007年第3期366-369,共4页
Based on the idea of the developed 3D-FSM.DDM boundary element method, the field with muti-medium was formulized firstly, then connected at the interface of two fields according to the continuous conditions of stress ... Based on the idea of the developed 3D-FSM.DDM boundary element method, the field with muti-medium was formulized firstly, then connected at the interface of two fields according to the continuous conditions of stress and displacement, after that, a boundary value problem with unified model was formed and solved. Ultimately, an applied numerical simulation system was developed. It was compared with the model having analytical solution for verifying the applicability and the calculating precision. 展开更多
关键词 multi-medium fictitious stress method (FSM) displacement discontinuity method (DDM) indirect boundary element method (IBEM) numerical simulation system
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IMPACT COAL CUTTING AND TESTING
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作者 田取珍 岳龙旺 《Journal of Coal Science & Engineering(China)》 1999年第2期62-66,共5页
The paper analyses the stress characteristics in longwall face and its interaction with impact coal cutting, and puts forward the operation method for impact coal cotting. Similar material to the coal in particular mi... The paper analyses the stress characteristics in longwall face and its interaction with impact coal cutting, and puts forward the operation method for impact coal cotting. Similar material to the coal in particular mine was used to simulate the coal mass. Impact coal breaking test was performed on the test rig. The traveling pattern of the impact stress wave in coal and the dynamic response of impact parameters on coal property is analyzed. 展开更多
关键词 impact coal cutting longwall face impact stress
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