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高应力硬岩开挖扰动的能量耗散规律 被引量:11
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作者 曹文卓 李夕兵 +2 位作者 周子龙 叶海旺 吴浩 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2014年第8期2759-2767,共9页
基于离散元PFC 2D软件建立的深部岩体模型,根据巷道围岩的可释放应变能、岩石耗散能以及岩石颗粒总动能的能量,描述深部硬岩的能量耗散和释放规律,揭示深部能量演化机制。研究结果表明:所建立岩体离散元模型及微观参数能有效反映深部开... 基于离散元PFC 2D软件建立的深部岩体模型,根据巷道围岩的可释放应变能、岩石耗散能以及岩石颗粒总动能的能量,描述深部硬岩的能量耗散和释放规律,揭示深部能量演化机制。研究结果表明:所建立岩体离散元模型及微观参数能有效反映深部开挖应变能释放规律;当侧压系数λ=2.1时,高地应力作用下巷道围岩的破裂形式以集中于巷道顶底板位置的拉伸破裂为主,破裂区域随采深增加而增加,破裂面积以圆形断面最小;开挖卸载后的能量演化是一个动态调整的过程,巷道附近围岩的应变能积累较动能释放有约2.5 ms的滞后;开挖后岩体后续应变能的积累量远大于巷道围岩总释放动能与总耗散能之和,约为两者之和的10倍,这也是开挖扰动容易引起围岩破裂的重要原因之一;岩体的总耗散能主要用于岩体颗粒间裂纹的萌生、扩展及贯通,裂纹总数和岩体总耗散能表现出极好的线性相关关系。 展开更多
关键词 开挖扰动 高应力卸荷 能量耗散 PFC 2D软件
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Dynamic characteristics of high stressed red sandstone subjected to unloading and impact loads 被引量:12
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作者 GONG Feng-qiang ZHONG Wen-hui +2 位作者 GAO Ming-zhong SI Xue-feng WU Wu-xing 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期596-610,共15页
In the process of deep projects excavation,deep rock often experiences a full stress process from high stress to unloading and then to impact disturbance failure.To study the dynamic characteristics of three-dimension... In the process of deep projects excavation,deep rock often experiences a full stress process from high stress to unloading and then to impact disturbance failure.To study the dynamic characteristics of three-dimensional high stressed red sandstone subjected to unloading and impact loads,impact compression tests were conducted on red sandstone under confining pressure unloading conditions using a modified split Hopkinson pressure bar.Impact disturbance tests of uniaxial pre-stressed rock were also conducted(without considering confining pressure unloading effect).The results demonstrate that the impact compression strength of red sandstone shows an obvious strain rate effect.With an approximately equal strain rate,the dynamic strength of red sandstone under confining unloading conditions is less than that in the uniaxial pre-stressed impact compression test.Confining pressure unloading produces a strength-weakening effect,and the dynamic strength weakening factor(DSWF)is also defined.The results also indicate that the strain rate of the rock and the incident energy change in a logarithmic relation.With similar incident energies,unloading results in a higher strain rate in pre-stressed rock.According to the experimental analysis,unloading does not affect the failure mode,but reduces the dynamic strength of pre-stressed rock.The influence of confining pressure unloading on the shear strength parameters(cohesion and friction angle)is discussed.Under the same external energy impact compression,prestressed rock subjected to unloading is more likely to be destroyed.Thus,the effect of unloading on the rock mechanical characteristics should be considered in deep rock project excavation design. 展开更多
关键词 deep rock excavation unloading unloading confining pressure three-dimensional high stress strengthweakening effect impact disturbance
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