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Numerical Simulation of Independent Advance of Ore Breaking in the Non-pillar Sublevel Caving Method 被引量:22
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作者 ZHOU Chuan-bo YAO Ying-kang +3 位作者 GUO Liao-wu YIN Xiao-peng FAN Xiao-feng SHANG Ying 《Journal of China University of Mining and Technology》 EI 2007年第2期295-300,共6页
The mechanism of stress generation and propagation by detonation loading in five separate independent advance of ore breaking patterns is discussed in the paper. An elastic numerical model was developed using AN- SYS/... The mechanism of stress generation and propagation by detonation loading in five separate independent advance of ore breaking patterns is discussed in the paper. An elastic numerical model was developed using AN- SYS/LS-DYNA 3D Nonlinear Dynamic Finite Element Software. In this package ANSYS is the preprocessor and LS-DYNA is the postprocessor. Numerical models in the paper to actual were l:10 and the element mesh was dissected in scanning mode utilizing the symmetry characteristics of the numerical model. Five different advance rates were studied. Parameters, such as the time required to maximum stress, the action time of the available stress, the maximum velocity of the nodes, the stress penetration time, the magnitude of the stress peak and the time duration for high stress were numerically simulated. The 2.2 m advance appeared optimum from an analysis of the simulation results. The results from numerical simulation have been validated by tests with physical models. 展开更多
关键词 non-pillar sublevel caving method independent advance of ore breaking numerical simulation model test
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SAFETY PROBLEMS IN FULLY-MECHANIZED TOP-COAL CAVING LONGWALL FACES 被引量:1
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作者 吴健 郭文章 《Journal of China University of Mining and Technology》 1994年第2期20-25,共6页
The thick-san top-ctal catrig technology has been in use in China for over a decade,and has given rise to siguscant economic efficiendes. Eftorts in reeent years to extend its applica tion to more complex mining condi... The thick-san top-ctal catrig technology has been in use in China for over a decade,and has given rise to siguscant economic efficiendes. Eftorts in reeent years to extend its applica tion to more complex mining conditions, mostly high-gas seams , with or without proneness ofspontaneous combustion. have brought about new safety problems This paper will highlight thefcatures and problems retared with thick-seam top-coal caving systems, compared with conventionai, fully-mecbanized longwall systems , particularly issues retated to methane, spontaneous combustion and dust,and disam the methods and measures to ded with them. 展开更多
关键词 fully-mechanized top-coal caving method METHANE spontaneous combustion coal dust
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Analysis of factors of top coal caving in fully mechanized sublevel caving face in soft coal and control
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作者 藏传伟 何富连 《Journal of Coal Science & Engineering(China)》 2007年第3期301-305,共5页
According to the analysis of the mechanism of top coal caving, the caving condition was pointed out, and many factors of caving were also determined. Then the relationship between factors and caving was studied. Based... According to the analysis of the mechanism of top coal caving, the caving condition was pointed out, and many factors of caving were also determined. Then the relationship between factors and caving was studied. Based on the above research, one effective method by using field monitoring was brought forward to determine the controlling factor. Then some related key technologies were provided, such as keeping the integrality of the top-coal, raising the horizontal resistance of supports and decreasing the real end-face distance etc.. At last one application of this method was presented, and it was proved to be an effective method. 展开更多
关键词 fully mechanized sublevel caving method in soft coals top-coal caving in the end-face caving arch field monitoring control of the end-face
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Research and Application of Fully-caving Mining of Protective Coal Pillar in Industrial Square
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作者 DAI Hongjie CHEN Jianpeng 《外文科技期刊数据库(文摘版)工程技术》 2021年第10期953-956,共6页
Based on the analysis of the geological conditions of the protective coal pillars in the industrial square, the mine has determined the mining plan, adopted the full caving method to recover the coal pillars in the in... Based on the analysis of the geological conditions of the protective coal pillars in the industrial square, the mine has determined the mining plan, adopted the full caving method to recover the coal pillars in the industrial square, strengthened the observation of shaft deformation on a daily basis, safely recovered the coal resources, prolonged the service life of the mine and ensured the stability of the staff. 展开更多
关键词 total caving method protective coal pillar RESEARCH APPLICATION
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Theoretical analysis on the deformation characteristics of coal wall in a longwall top coal caving face 被引量:6
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作者 Bai Qingsheng Tu Shihao +1 位作者 Li Zhaoxin Tu Hongsheng 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2015年第2期199-204,共6页
Against the background of analyzing coal wall stability in 14101 fully mechanized longwall top coal caving face in Majialiang coal mine,based on the torque equilibrium of the coal wall,shield support and the roof stra... Against the background of analyzing coal wall stability in 14101 fully mechanized longwall top coal caving face in Majialiang coal mine,based on the torque equilibrium of the coal wall,shield support and the roof strata,an elastic mechanics model was established to calculate the stress applied on the coal wall.The displacement method was used to obtain the stress and deformation distributions of the coal wall.This study also researched the influence of support resistance,protective pressure to the coal wall,fracture position of the main roof and mining height on the coal wall deformation.The following conclusions are drawn:(1) The shorter the distance from the longwall face,the greater the vertical compressive stress and horizontal tensile stress borne by the coal wall.The coal wall is prone to failure in the form of compressive-shear and tension;(2) With increasing support resistance,the revolution angle of the main roof decreases linearly.As the support resistance and protective force supplied by the face guard increases,the maximum deformation of the coal wall decreases linearly;(3) As the face approaches the fracture position of the main roof,coal wall horizontal deformation increases significantly,and the coal wall is prone to instability;and(4) The best mining height of 14101 longwall face is 3.0 m. 展开更多
关键词 Longwall top coal caving face Coal wall deformation Torque equilibrium Displacement method Parametric analysis
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A discrete model for prediction of radon flux from fractured rocks 被引量:4
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作者 K.M. Ajayi K. Shahbazi +1 位作者 R Tukkaraja K. Katzenstein 《Journal of Rock Mechanics and Geotechnical Engineering》 CSCD 2018年第5期879-892,共14页
Prediction of radon flux from the fractured zone of a propagating cave mine is basically associated with uncertainty and complexity. For instance, there is restricted access to these zones for field measure- ments, an... Prediction of radon flux from the fractured zone of a propagating cave mine is basically associated with uncertainty and complexity. For instance, there is restricted access to these zones for field measure- ments, and it is quite difficult to replicate the complex nature of both natural and induced fractures in these zones in laboratory studies. Hence, a technique for predicting radon flux from a fractured rock using a discrete fracture network (DFN) model is developed to address these difficulties. This model quantifies the contribution of fractures to the total radon flux, and estimates the fracture density from a measured radon flux considering the effects of advection, diffusion, as well as radon generation and decay. Radon generation and decay are classified as reaction processes. Therefore, the equation solved is termed as the advection-diffusion-reaction equation (ADRE). Peclet number (Pe), a conventional dimensionless parameter that indicates the ratio of mass transport by advection to diffusion, is used to classify the transport regimes. The results show that the proposed model effectively predicts radon flux from a fractured rock. An increase in fracture density for a rock sample with uniformly distributed radon generation rate can elevate radon flux significantly compared with another rock sample with an equivalent increase in radon generation rate. In addition to Pe, two other independent dimensionless parameters (derived for radon transport through fractures) significantly affect radon dimensionless flux. Findings provide insight into radon transport through fractured rocks and can be used to improve radon control measures for proactive mitigation. 展开更多
关键词 Radon mass flux Radon dimensionless flux Stochastic model Discrete fracture network (DFN) caving mining method Fractured rocks
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