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组合电压水中放电致裂煤岩体损伤及裂纹扩展演化规律
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作者 鲍先凯 乔建龙 +3 位作者 崔广芹 王凌宇 田保龙 王李智 《煤炭科学技术》 北大核心 2025年第3期248-263,共16页
为探究组合电压水中放电对煤岩体的损伤作用及裂纹扩展演化规律,在煤岩体钻孔水中(静水压为3 MPa)进行组合电压放电试验,并利用声发射技术(AE)和PFC2D数值模拟分析组合电压放电作用下煤岩体损伤和裂纹发育特征及不同因素对致裂效果的影... 为探究组合电压水中放电对煤岩体的损伤作用及裂纹扩展演化规律,在煤岩体钻孔水中(静水压为3 MPa)进行组合电压放电试验,并利用声发射技术(AE)和PFC2D数值模拟分析组合电压放电作用下煤岩体损伤和裂纹发育特征及不同因素对致裂效果的影响。研究结果表明:单一电压作用下,AE最大振铃计数、累计振铃计数随着放电次数的增加整体上呈现减小的趋势;组合电压作用下,AE最大振铃计数及累计振铃计数在改变电压时急剧增加,AE最大振铃计数增幅179.6%,累计振铃计数增幅124.3%,振铃计数总量增长趋势比单一电压放电更快。单一放电电压作用下,达到一定放电次数后再次放电基本不再产生新生事件;组合电压可以使AE事件数量在改变电压后急剧增加,新生的事件源幅值更高,分布范围更广,事件的增加趋势明显高于单一放电。组合电压放电在改变电压时,产生大量新生裂纹,且放电产生的能量被优先用于新生裂纹的扩展,最终放电12次后裂纹相比单一电压放电,产生的主裂纹数量更多,且各主裂纹长度相差较小,更均匀,致裂效果更好。在组合电压放电中,不同电压跃迁次数及电压梯度下的裂纹均是在改变电压时增长增长较多,最终放电12次后各组的裂纹数量相差较小;随着电压跃迁次数及电压梯度的增加,外界输入能量越小,但裂纹增长趋势越快,主裂纹数量越多,长度分布越均匀。 展开更多
关键词 组合电压 水中放电 裂纹扩展演化 PFC2D 致裂效果
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细观尺度下大孔隙环氧沥青混合料损伤演化分析 被引量:5
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作者 王江洋 钱振东 王亚奇 《北京工业大学学报》 CAS CSCD 北大核心 2013年第8期1223-1229,共7页
通过数字图像技术获取了大孔隙环氧沥青混合料的多相细观结构,建立了包含集料、沥青砂浆、空隙在内的细观结构有限元仿真模型,引入了内聚力模型,通过劈裂试验数值模拟,对内部结构应力响应、裂纹扩展及损伤演化过程进行了分析.研究结果表... 通过数字图像技术获取了大孔隙环氧沥青混合料的多相细观结构,建立了包含集料、沥青砂浆、空隙在内的细观结构有限元仿真模型,引入了内聚力模型,通过劈裂试验数值模拟,对内部结构应力响应、裂纹扩展及损伤演化过程进行了分析.研究结果表明:空隙、集料等细观结构的不均匀分布,对混合料的应力响应及其分布均造成一定影响;劈裂试验模拟过程中,损伤变量D值达到1时,试件开始启裂,预设内聚力单元模拟的启裂位置与室内试验观察较为一致,而后裂缝开始扩展,但扩展速率逐渐变小;双线性内聚力模型较好地模拟了混合料损伤规律与裂纹启裂、扩展路径. 展开更多
关键词 大孔隙环氧沥青混合料 双线性内聚力模型 非均质细观结构 裂纹扩展与损伤演化
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Tunnel failure in hard rock with multiple weak planes due to excavation unloading of in-situ stress 被引量:12
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作者 CHEN Shao-jie FENG Fan +4 位作者 WANG Ya-jun LI Di-yuan HUANG Wan-peng ZHAO Xing-dong JIANG Ning 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第10期2864-2882,共19页
Natural geological structures in rock(e.g.,joints,weakness planes,defects)play a vital role in the stability of tunnels and underground operations during construction.We investigated the failure characteristics of a d... Natural geological structures in rock(e.g.,joints,weakness planes,defects)play a vital role in the stability of tunnels and underground operations during construction.We investigated the failure characteristics of a deep circular tunnel in a rock mass with multiple weakness planes using a 2D combined finite element method/discrete element method(FEM/DEM).Conventional triaxial compression tests were performed on typical hard rock(marble)specimens under a range of confinement stress conditions to validate the rationale and accuracy of the proposed numerical approach.Parametric analysis was subsequently conducted to investigate the influence of inclination angle,and length on the crack propagation behavior,failure mode,energy evolution,and displacement distribution of the surrounding rock.The results show that the inclination angle strongly affects tunnel stability,and the failure intensity and damage range increase with increasing inclination angle and then decrease.The dynamic disasters are more likely with increasing weak plane length.Shearing and sliding along multiple weak planes are also consistently accompanied by kinetic energy fluctuations and surges after unloading,which implies a potentially violent dynamic response around a deeply-buried tunnel.Interactions between slabbing and shearing near the excavation boundaries are also discussed.The results presented here provide important insight into deep tunnel failure in hard rock influenced by both unloading disturbance and tectonic activation. 展开更多
关键词 rock tunnel weak planes excavation unloading crack propagation energy evolution finite element method/discrete element method(FEM/DEM)
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Stress evolution and failure process of Brazilian disc under impact 被引量:6
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作者 周子龙 邹洋 +1 位作者 李夕兵 江益辉 《Journal of Central South University》 SCIE EI CAS 2013年第1期172-177,共6页
To reveal stress distribution and crack propagation of Brazilian discs under impact loads, dynamic tests were conducted with SHPB (split Hopkinson pressure bar) device. Stress states of specimens were monitored with... To reveal stress distribution and crack propagation of Brazilian discs under impact loads, dynamic tests were conducted with SHPB (split Hopkinson pressure bar) device. Stress states of specimens were monitored with strain gauges on specimen surface and SHPB bars. The failure process of specimen was recorded by ultra speed camera FASTCAM SAI.1 (675 000 fps). Stress histories from strain gauges offer comprehensive information to evaluate the stress equilibrium of specimen in time and space. When a slowly rising load (with loading rates less than 1 200 N/s for d 50 mm bar) is applied, there is usually good stress equilibrium in specimen. The stress distribution after equilibrium is similar to its static counterpart. And the first crack initiates at the disc center and propagates along the load direction. But with the front of incident wave becoming steep, it is hard for specimens to get to stress equilibrium. The first crack may appear anywhere on the specimen together with multiple randomly distributed secondary cracks. For a valid dynamic Brazil test with stress equilibrium, the specimen will break into two halves neatly. While for tests with stress disequilibrium, missing strap may be found when broken halves of specimens are put together. For those specimens broken up neatly at center but having missing wedges at the loading areas, it is usually subjected to local buckling from SHPB bars. 展开更多
关键词 dynamic Brazil test Brazilian disc stress evolution failure pattern
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Numerical simulation on effect of heterogeneity on modeΙfracture characteristics of rock 被引量:6
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作者 WANG Jin-tao ZUO Jian-ping 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第10期3063-3077,共15页
Rock is more sensitive to tensile loading than compressive loading,since the tensile strength of rock is much lower than compressive strength.The fracture characteristics of rock in the tensile state are of great sign... Rock is more sensitive to tensile loading than compressive loading,since the tensile strength of rock is much lower than compressive strength.The fracture characteristics of rock in the tensile state are of great significance to the understanding of rock failure mechanisms.To this end,we have conducted numerical simulation researches on modeⅠcracking process of rock with varying homogeneity,using the Realistic Failure Process Analysis program.With the increase of homogeneity,cracks are concentrating to the ligament area with a decreasing number of crack bifurcations,and the main crack path is becoming smooth.Crack behaviors and mechanical properties are influenced significantly when the homogeneity index is in the range of 1.5 to 5.When the homogeneity index is greater than 30,they are not affected by rock homogeneity and the rock can be considered as essentially homogeneous.It is considered that the global and local strengths are affected by the distribution of rock mechanical properties at mesoscale,which influence the crack behaviors and mechanical characteristics. 展开更多
关键词 rock heterogeneity crack evolution subcritical crack growth fracture mechanism
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