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The Effect of Wave Propagation on Seismic Response at Transmitting Boundary of Discrete System

机译:波传播对离散系统发射边界的地震响应的影响

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When analyzing the seismic response of a very long elevated structure such as a Shinkansen viaduct, it is common practice to analyze a cutout of the structure under consideration and treat its both ends as free boundaries. This is attributable to the assumption that seismic response analysis assuming free boundary conditions is more conservative than one assuming non-free boundary conditions. In this study, after finding out that response to harmonic ground motion can be greater than under free-boundary conditions if outward energy dissipation occurs from the analysis domain, a series of numerical experiments was performed to determine whether such phenomena occur in seismic response. Then, after confirming that the frequency components of ground motion that satisfy the wave propagation condition greatly affect seismic response, the study showed that the area of the wave propagation condition region of the Fourier spectrum can be used as an indicator by which to judge the likelihood of occurrence of such phenomena.
机译:当分析SENANSEN高架桥等非常长的升高结构的地震反应时,常常做出分析所考虑的结构的切口并将其两端视为自由边界。这归因于假设假设自由边界条件的地震响应分析比假设非自由边界条件更保守的地震响应分析。在本研究中,在发现对谐波地运动的响应可以大于自由边界条件之后,如果从分析结构域发生外外能量耗散,则进行一系列数值实验以确定这种现象是否发生在地震反应中。然后,在确认满足波传播条件的地面运动的频率分量大大影响地震响应之后,研究表明,傅里叶频谱的波传播条件区域的面积可用作判断可能性的指示器发生这种现象。

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