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建筑结构对爆破震动响应的动力学计算方法 被引量:3
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作者 王小林 吴枫 徐书雷 《西安科技学院学报》 北大核心 2002年第4期411-413,共3页
爆破震动是在城市进行拆除爆破中需要考虑的重要问题。作者提出几种计算爆破地震力的方法。首先介绍工程中广泛采用的反应谱法,并在反应谱法的基础上提出了一种计算结构在爆破震动作用下内力大小的方法———底部剪力法。该方法简便可靠... 爆破震动是在城市进行拆除爆破中需要考虑的重要问题。作者提出几种计算爆破地震力的方法。首先介绍工程中广泛采用的反应谱法,并在反应谱法的基础上提出了一种计算结构在爆破震动作用下内力大小的方法———底部剪力法。该方法简便可靠,在工程中有一定的可行性。 展开更多
关键词 建筑结构 爆破震动响应 计算方法 反应谱法 爆破地震力 底部剪
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Numerical simulation on radiation and energy of blast-induced seismic waves in deep rock masses 被引量:8
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作者 YANG Jian-hua WU Ze-nan +2 位作者 SUN Wen-bin YAO Chi WANG Qiu-hui 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第2期645-662,共18页
With regard to blasting in deep rock masses,it is commonly thought that an increase in the in-situ stress will change the blast-induced rock crack propagation and ultimately affect rock fragmentation.However,little at... With regard to blasting in deep rock masses,it is commonly thought that an increase in the in-situ stress will change the blast-induced rock crack propagation and ultimately affect rock fragmentation.However,little attention has been given to the change in seismic wave radiation when the fractured zone changes with the in-situ stress.In this study,the influences of in-situ stress on blast-induced rock fracture and seismic wave radiation are numerically investigated by a coupled SPH-FEM simulation method.The results show that the change in blast-induced rock fracture with in-situ stress has a considerable effect on the seismic wave energy and composition.As the in-situ stress level increases,the size of the fractured zone is significantly reduced,and more explosion energy is transformed into seismic energy.A reduction in the size of the fractured zone(seismic wave source zone)results in a higher frequency content of the seismic waves.In a nonhydrostatic in-situ stress field,blast-induced cracks are most suppressed in the direction of the minimum in-situ stress,and thus the seismic waves generated in this direction have the highest energy density.In addition to P-waves,Swaves are also generated when a circular explosive is detonated in a nonhydrostatic in-situ stress field.The S-waves result from the asymmetrical release of rock strain energy due to the anisotropic blast-induced fracture pattern. 展开更多
关键词 BLASTING in-situ stress seismic wave rock fracture SPH-FEM
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