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平面爆破P波扰动下深埋圆形衬砌隧道瞬态动力响应解析解研究 被引量:4
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作者 李梅 高鑫鑫 +4 位作者 梅万全 雷涛 韩高升 潘鹏志 张义云 《爆破》 CSCD 北大核心 2022年第3期33-40,共8页
目前爆破扰动下隧道的动力响应解析解研究多为稳态,且主要集中在无衬砌隧道;而实际工程施工爆破扰动以瞬态波的形式传播,且大多隧道有衬砌。因此,论文以深埋圆形有衬砌隧道为研究对象,采用波函数展开法和梯形求积,开展平面爆破P波扰动... 目前爆破扰动下隧道的动力响应解析解研究多为稳态,且主要集中在无衬砌隧道;而实际工程施工爆破扰动以瞬态波的形式传播,且大多隧道有衬砌。因此,论文以深埋圆形有衬砌隧道为研究对象,采用波函数展开法和梯形求积,开展平面爆破P波扰动下的隧道瞬态动力响应解析解研究:通过分析平面简谐P波入射时衬砌和围岩中的波场,考虑深埋隧道衬砌与围岩相互作用的边界条件,确定隧道周围的稳态响应;在稳态解的基础上运用梯形求积,求出平面爆破P波扰动下深埋圆形衬砌隧道动力响应问题的瞬态解析解,进而分析隧道衬砌与围岩接触面和隧道内的动应力集中系数、径向和环向振动速度的动态响应情况。研究结果表明:本文解析结果与FLAC及CASRock数值结果一致,验证了本文方法的可行性以及正确性;动力扰动过程中隧道两帮出现拉应力集中,顶底板主要出现压应力集中,隧道两侧的径向振动速度要显著大于隧道顶部,环向振动速度随着爆破荷载的加卸载先增大后减小至零。解析结果可以为深埋隧道的支护提供理论基础。 展开更多
关键词 爆破p波 瞬态响应 圆形衬砌隧道 函数展开法 CASRock
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Seismic effort of blasting wave transmitted in coal-rock mass associated with mining operation 被引量:8
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作者 曹安业 窦林名 +3 位作者 骆循 张益东 黄军利 K.Andrew 《Journal of Central South University》 SCIE EI CAS 2012年第9期2604-2610,共7页
Microseismic effects during the transmission of seismic waves in coal and rock mass associated with mining operation were studied by on-site blasting tests and microseismic monitoring in LW704 of Southern Colliery,Aus... Microseismic effects during the transmission of seismic waves in coal and rock mass associated with mining operation were studied by on-site blasting tests and microseismic monitoring in LW704 of Southern Colliery,Australia,by using spread velocities,amplitudes and frequency contents as the main analysis parameters.The results show that the average P-wave velocity,mean values of combined maximal amplitudes and frequencies of the first arrivals are all reduced significantly along with goaf expanding and intensity weakening of overlying strata during mining process.A full roof fracturing can make the average P-wave velocities,combined maximal amplitudes and frequencies of first arrivals reduce to about 69.8%,92.2% and 60.0%,respectively.The reduction of the above seismic parameters reveals dynamic effects of the variation of strata structure and property to the wave transmission and energy dissipation of blasting wave.The research greatly benefits further study on stability of surrounding rock under the destructive effort by mine tremor,blasting,etc,and provides experimental basis for source relocation and parameter optimization of seismic monitoring as well. 展开更多
关键词 seismic effort blasting wave transmission and attenuation rule fracture zone intensity weakening geophone station
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