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深地充填体断裂特性及裂纹扩展模式研究 被引量:9
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作者 徐文彬 曹培旺 程世康 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2018年第10期2508-2518,共11页
为了研究深地充填体的断裂特性,分别将经温度为40,60,80,100和120℃热处理后的胶结充填体试件进行三点弯曲试验,利用高速摄像机-加载系统进行裂纹扩展模式全程捕捉,并编写Matlab图像处理程序,对充填体微观结构进行量化分析。研究结果表... 为了研究深地充填体的断裂特性,分别将经温度为40,60,80,100和120℃热处理后的胶结充填体试件进行三点弯曲试验,利用高速摄像机-加载系统进行裂纹扩展模式全程捕捉,并编写Matlab图像处理程序,对充填体微观结构进行量化分析。研究结果表明:充填体的断裂韧度与纵波波速随热处理温度的升高而减小;当热处理温度从40℃上升到120℃时,充填体断裂韧度降幅达64.72%;基于波速的变化,热损伤因子D可分为3个阶段,即负损伤阶段、加速损伤阶段和稳定损伤阶段;随着热处理温度升高,孔隙率变化趋势与断裂韧度相反;断裂裂纹可分为3个阶段,且随着温度升高,裂纹的整体扩展路径经历了直线→弯曲→直线的过程,并在断裂过程中出现未脱落块体和碎裂状块体的脱落;主裂纹在扩展过程中会衍生出次生裂纹,且主裂纹分叉特征愈加明显。 展开更多
关键词 深地采矿 温度 胶结充填体 三点弯曲 裂纹扩展
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Study on Critical,Modern Technology for Mining in Gassy Deep Mines 被引量:10
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作者 YUAN Liang 《Journal of China University of Mining and Technology》 EI 2007年第2期226-231,共6页
To achieve safe and highly efficient mining in the gassy, deep mines of the Huainan collieries simultaneous coal and gas extraction, and the corresponding ventilation methods were developed. This includes a set of min... To achieve safe and highly efficient mining in the gassy, deep mines of the Huainan collieries simultaneous coal and gas extraction, and the corresponding ventilation methods were developed. This includes a set of mining procedures and principles which help insure safe and efficient production. Furthermore, green mining, meaning the comprehensive use of emitted gas, proper treatment of the environment and appropriate mine temperature control, is now standard. The concepts of modem mining and the principles of pressure relief are described. Coal-gas simultaneous ex- traction and multi-pressure relief techniques were developed which require a combination of surface and underground gas extraction. The application of Y-ventilation systems, of roadways retained along goafs, of stress control techniques for highly fragile mine roofs and of powerful, automatic and reliable mining equipment contributes to safe operation of modem deep mines. Operating parameters for these techniques are described and the results of their use discussed. 展开更多
关键词 gassy deep mining modem mining intrinsic safety coal and gas simultaneous extraction green mining
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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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