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不同温度-冲击载荷下煤的渗透率演化规律研究
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作者 程士宜 《煤矿安全》 CAS 北大核心 2024年第8期43-50,共8页
为了探究不同温度-冲击载荷复合场下煤孔压裂后渗透率变化规律,基于分形理论和经典模型,分析极限冲击载荷和温度引起煤的静态应变和动态应变,推导复合场煤的渗透率模型,利用不同温度-冲击载荷下冲击-压裂渗流实验,了解煤孔压裂时渗透率... 为了探究不同温度-冲击载荷复合场下煤孔压裂后渗透率变化规律,基于分形理论和经典模型,分析极限冲击载荷和温度引起煤的静态应变和动态应变,推导复合场煤的渗透率模型,利用不同温度-冲击载荷下冲击-压裂渗流实验,了解煤孔压裂时渗透率随温度和冲击载荷变化规律情况。结果表明:当压力<1.0 MPa时,受温度-冲击载荷影响,渗透通道变窄,煤渗透率随冲击载荷升高逐渐降低,随温度升高逐渐下降并趋于平缓;当1.0 MPa≤压力<10.0 MPa时,受冲击载荷作用,导致渗透通道变宽、数量增多,渗透率随冲击载荷增加呈近似指数上升趋势;当压力≥10.0 MPa时,冲击载荷达到极限抗压载荷,煤发生压裂破碎,冲击能量释放,裂隙结构稳定,致使渗透率趋于稳定;复合场作用下,煤孔冲击压裂经过敏感温度渗透和敏感冲击载荷渗透2个阶段;新模型计算数值与试验值基本相同,较好呈现不同温度-冲击载荷下煤孔压裂渗透率变化规律;煤孔压裂煤在较小冲击载荷作用下,渗透率降低,产生滑脱效应;冲击载荷达到煤极限抗拉载荷后,煤内部发生径向和环向破裂,滑脱效应减弱,渗透率增加。 展开更多
关键词 温度-冲击载荷 冲击-压裂 静态-动态渗透率 敏感临界值 滑脱效应
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Controlling roof with potential rock burst risk through different pre-crack length:Mechanism and effect research 被引量:5
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作者 ZHAO Tong-bin ZHANG Peng-fei +3 位作者 GUO Wei-yao GONG Xu-fei WANG Chao CHEN Yang 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第11期3706-3719,共14页
Roof pre-splitting is an effective method to control the roof with potential rock burst risk.In this study,three-point bending tests were carried out by using fine sandstone specimens with different pre-cracked length... Roof pre-splitting is an effective method to control the roof with potential rock burst risk.In this study,three-point bending tests were carried out by using fine sandstone specimens with different pre-cracked lengths as test objects,and digital speckle correlation method(DSCM)and acoustic emission(AE)technology were used to track the entire process of crack propagation.The effect of pre-cracks on the fracture of rock beams was evaluated,and the mechanical mechanism of the rock beam fracture process was analyzed.The rock beam pre-splitting design method was developed,and the application effect of the method was proved by the microseismic monitoring data obtained from the 10303 working face of Jining No.2 coal mine in China.The results show that the loading time history curve of pre-cracked beams exhibits obvious residual characteristics.Compared with the intact rock beam,the tensile strength,and maximum tensile strain of 35 mm pre-cracked rock beam are decreased by 32.4% and 33.1%,respectively and the acoustic emission b value is increased by 30.2%.According to the pre-splitting design method of rock beam,the maximum and average microseismic energy of the 10303 working face after pre-splitting construction are reduced by 25.6% and 6.4%,respectively,with excellent prevention and control effect of thick roof. 展开更多
关键词 three-point bending acoustic emission roof pre-splitting digital speckle correlation method rock burst control
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