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Blasting induced dynamic stress concentration and failure characteristics of deep-buried rock tunnel
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作者 ZHAO Rui TAO Ming +2 位作者 xiang gong-liang WANG Shao-feng ZHAO Hua-tao 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第7期2321-2340,共20页
In this study,the dynamic stress concentration factors(DSCF)around a straight-wall arch tunnel(SWAT)were solved analytically utilizing the complex variable function methods and Duhamel’s integral.The effects of wavel... In this study,the dynamic stress concentration factors(DSCF)around a straight-wall arch tunnel(SWAT)were solved analytically utilizing the complex variable function methods and Duhamel’s integral.The effects of wavelength,incident angle,and blasting rising time on the DSCF distribution were analyzed.Theoretical results pointed out dynamic disturbances resulting in compressive stress concentration in the vertical direction and tensile stress in the incident direction.As the wavelength and rising time increased,there was a tendency for the amplitude of stress concentration to initially rise and then converge.Moreover,a series of 3D FEM models were established to evaluate the effect of different initial stress states on the dynamic failure of the tunnel surrounding rock.The results indicated that the failure of the surrounding rock was significantly influenced by the direction of the static maximum principal stress and the direction of the dynamic disturbance.Under the coupling of static and blasting loading,damage around the tunnel was more prone to occur in the dynamic and static stress concentration coincidence zone.Finally,the damage modes of rock tunnel under static stress and blasting disturbance from different directions were summarized and a proposed support system was presented.The results reveal the mechanisms of deep-buried rock tunnel destruction and dynamically triggered rockburst. 展开更多
关键词 stress wave scattering dynamic stress analysis rock tunnel dynamic failure analysis
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充液圆腔对平面P波的散射与围岩的瞬态响应 被引量:3
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作者 陶明 向恭梁 +1 位作者 赵瑞 吴成清 《Journal of Central South University》 SCIE EI CAS CSCD 2023年第2期568-583,共16页
动力扰动在结构周围的散射所引起的动应力集中是影响深部地下结构损伤的重要因素。为了研究地下充满流体的圆形空孔周围的动力响应,建立了无限介质中平面P波入射充液圆腔的简化模型。基于波函数展开法,得到充液腔周围动应力集中的解析... 动力扰动在结构周围的散射所引起的动应力集中是影响深部地下结构损伤的重要因素。为了研究地下充满流体的圆形空孔周围的动力响应,建立了无限介质中平面P波入射充液圆腔的简化模型。基于波函数展开法,得到充液腔周围动应力集中的解析解。利用傅里叶积分变换,推导充满流体的空腔周围受瞬态冲击的动态应力集中因子(DSCFs)表达式。同时,定量分析稳态和瞬态入射波作用下DSCFs与波形参数的关系。利用有限元程序LS-DYNA建立数值模型,分析瞬态冲击载荷作用下充液腔周围的动应力集中与围岩的破坏规律。研究表明,充液圆腔周围的动应力集中分布受到入射方向、泊松比、时间和波数的综合影响。本研究为地下引水隧洞和油气储藏的抗震加固提供参考。 展开更多
关键词 充液圆腔 波的散射 波函数展开法 动应力集中
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