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Frequency and damping evolution during experimental seismic response of civil engineering structures

机译:土木工程结构试验地震响应中的频率和阻尼演化

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摘要

The results of the seismic tests on several reinforced-concrete shear walls and a four-storey frame are analysed in this paper. Each specimen was submitted to the action of a horizontal accelerogram, with successive growing amplitudes, using the pseudodynamic method. An analysis of the results allows knowing the evolution of the eigen frequency and damping ratio during the earthquakes thanks to an identification method working in the time domain. The method is formulated as a spatial model in which the stiffness and damping matrices are directly identified from the experimental displacements, velocities and restoring forces. The obtained matrices are then combined with the theoretical mass in order to obtain the eigen frequencies, damping ratios and modes. Those parameters have a great relevance for the design of this type of structures.
机译:本文分析了几个钢筋混凝土剪力墙和一个四层框架的抗震测试结果。使用拟动力方法,使每个标本经受水平加速度图的作用,并具有连续增大的幅度。对结果的分析使人们能够了解地震过程中本征频率和阻尼比的变化,这要归功于时域识别方法。该方法被公式化为空间模型,在该模型中,可以从实验位移,速度和恢复力直接确定刚度和阻尼矩阵。然后将获得的矩阵与理论质量合并,以获得本征频率,阻尼比和模式。这些参数与这类结构的设计有很大的关系。

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