叠加原理
岩体分类
间断(语言学)
地质学
地震波
地震学
参数统计
振动
断层(地质)
表面波
粘弹性
地震动
波传播
刚度
岩土工程
机械
结构工程
物理
声学
工程类
光学
数学分析
统计
数学
量子力学
热力学
作者
Jianchun Li,N.N. Li,Shaobo Chai,Hao Li
摘要
Summary Studying seismic wave propagation across rock masses and the induced ground motion is an important topic, which receives considerable attention in design and construction of underground cavern/tunnel constructions and mining activities. The current study investigates wave propagation across a rock mass with one fault and the induced ground motion using a recursive approach. The rocks beside the fault are assumed as viscoelastic media with seismic quality factors, Q p and Q s . Two kinds of interactions between stress waves and a discontinuity and between stress waves and a free surface are analyzed, respectively. As the result of the wave superposition, the mathematical expressions for induced ground vibration are deduced. The proposed approach is then compared with the existing analysis for special cases. Finally, parametric studies are carried out, which includes the influences of fault stiffness, incident angle, and frequency of incident waves on the peak particle velocities of the ground motions.
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