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Characteristics of wave propagation through rock mass slopes with weak structural planes and their impacts on the seismic response characteristics of slopes: a case study in the middle reaches of Jinsha River

机译:通过岩体斜坡具有弱结构平面的波传播特征及其对坡地地震反应特征的影响:金沙河中游的案例研究

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摘要

Time-frequency joint analysis was used to investigate the seismic response of rock slopes containing weak structural planes. Four three-dimensional finite element models containing infinite element boundaries were modelled: homogeneous slope, anti-dip slope, bedding slope, and block slope models. The material of the models was elastic material. The influence of the structural planes on the seismic responses of the slopes was systematically analyzed. The results of time-frequency joint analysis show that the structural planes impact the propagation characteristics of the waves and the dynamic amplification effect of the slopes. The wave propagation characteristics and peak ground acceleration distribution of the block slope model are more complex than those of the other models. The influence of structural planes on the amplification effect of the slopes is discussed. Additionally, according to frequency-domain analysis, structural planes have a small impact on the natural frequencies and the peak Fourier spectrum amplitude distribution of the slope but have a significant influence on its dynamic deformation characteristics. The natural frequencies of slopes can be obtained by using modal analysis and Fourier spectrum analysis. The relationships between the natural frequencies of the slopes and their dynamic deformation characteristics were analyzed; in particular, the impacts of low-order and high-order natural frequency on the deformation of the surficial slope were investigated. The applicability of the energy spectrum in the evaluation of the dynamic deformation characteristics of slopes was discussed. The effects of structural planes on the seismic failure mode of the slopes are identified according to the analyses of the dynamic responses of the slopes.
机译:时间频率接头分析用于研究含有弱结构平面的岩石斜坡的地震响应。含有无限元边界的四个三维有限元模型是模型:均匀斜坡,防倾斜,床上用品和块斜坡模型。模型的材料是弹性材料。结构平面对斜坡的地震反应的影响得到了系统地分析。时间频接头分析结果表明,结构平面会影响波浪的传播特性和斜坡的动态放大效果。块斜率模型的波传播特性和峰接地加速度分布比其他模型更复杂。讨论了结构平面对斜坡的放大效果的影响。另外,根据频域分析,结构平面对坡度的自然频率和峰值傅立叶频谱幅度分布具有小的影响,但对其动态变形特性具有显着影响。通过使用模态分析和傅里叶频谱分析,可以获得斜坡的自然频率。分析了斜坡自然频率与其动态变形特征之间的关系;特别地,研究了低阶和高阶固有频率对表格斜率变形的影响。讨论了能谱对斜坡动态变形特征评价的适用性。根据斜坡的动态响应的分析,鉴定了结构平面对斜面抗震失效模式的影响。

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