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采场全生命周期及其应力的时空演化特征分析 被引量:12
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作者 郑建伟 鞠文君 +4 位作者 赵曦 吴建星 任硕 赵朋朋 王帅 《煤炭学报》 EI CAS CSCD 北大核心 2019年第4期995-1002,共8页
井工开采过程中采场应力的分布及演化规律对于回采巷道及工作面围岩的稳定性控制至关重要。本文将开切眼到停采的全部过程称之为采场全生命周期,且将采场应力分为工作面超前支承应力和工作面顶板应力两部分,基于材料力学建立了采场全生... 井工开采过程中采场应力的分布及演化规律对于回采巷道及工作面围岩的稳定性控制至关重要。本文将开切眼到停采的全部过程称之为采场全生命周期,且将采场应力分为工作面超前支承应力和工作面顶板应力两部分,基于材料力学建立了采场全生命周期内覆岩结构模型得到了不同阶段超前支承应力的力学函数;借助UDEC软件来分析采动过程中覆岩结构的时空演化过程和超前支承应力的动态演化特征,得到了工作面超前支承应力和工作面顶板应力的协调非同步演化特征,认为单个周期来压内超前支承应力峰值会在空间和时间上超前于工作面顶板应力峰值出现,且二者均表现出周期来压前大于来压后的规律,在采场全生命周期内在采动达到非充分采动和充分采动交界点阶段先后达到极值,因此依据采场应力的演变规律将采场全生命周期分为发生期(Ⅰ)、发育期(Ⅱ)、稳定期(Ⅲ)3个阶段:发生期(Ⅰ)对应的是开切眼至基本顶初次来压,采场应力保持稳定的缓慢增长;发育期(Ⅱ)对应的是周期来压至非充分采动与充分采动阶段的交界点,采场应力保持不同的增长速率;稳定期(Ⅲ)对应的是充分采动直到停采阶段,采场应力保持着较为稳定的波动;通过对采场全生命周期及其应力的演化特征分析及划区可以预先对回采过程中的高位应力区进行判定,及早采取相应的措施,为采场的安全提供保障。 展开更多
关键词 采场全生命周期 超前支承应力 工作面顶板应力 覆岩结构 力学分析
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Theoretical analysis on the deformation characteristics of coal wall in a longwall top coal caving face 被引量:5
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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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