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首页> 外文期刊>Tunnelling and underground space technology >Seismic damage evaluation of an entire underground subway system in dense urban areas by 3D FE simulation
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Seismic damage evaluation of an entire underground subway system in dense urban areas by 3D FE simulation

机译:基于3D有限元模拟的稠密城市地下地铁系统整体震害评估。

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摘要

Underground structures often pass beneath high-rise buildings or are located close to them in megacities. Given complex site-city interactions, conventional earthquake engineering practices may leave megacities in seismically prone areas in potential danger. Rather than focusing purely on the interaction between soil and either surface structures or underground structures, this study aims to explore the earthquake-induced hazard of a dense urban area with an entire subway station, two long subway tunnels and 36 fully modeled high-rise piled frame buildings. The study is conducted through the 3D fully coupled dynamic analysis in both the time and frequency domains, emphasizing the influence of aboveground buildings on underground structures. The results reveal that the existence of aboveground buildings generally decreases the station's response and can either increase or decrease the subway tunnel's responses. The presence of either aboveground structures or underground structures affects the wavefield and in turn the responses of adjacent structures, highlighting the importance of considering soil-city interactions. The station is most dangerous at the columns' bottoms. The existence of subway stations and tunnels increases the nearby peak ground accelerations.
机译:地下结构通常会穿过高层建筑下方,或者在大城市中位于地下建筑物附近。考虑到复杂的工地与城市之间的相互作用,传统的地震工程实践可能会使地震多发地区的特大城市处于潜在的危险之中。这项研究并非单纯着眼于土壤与地表结构或地下结构之间的相互作用,而是旨在探索整个地铁站,两条长地铁隧道和36个完全建模的高层建筑的稠密城市地区的地震诱发灾害框架建筑物。该研究是通过时域和频域中的3D全耦合动力分析进行的,着重强调了地上建筑对地下结构的影响。结果表明,地上建筑物的存在通常会降低车站的响应,并可能增加或减少地铁隧道的响应。地上结构或地下结构的存在会影响波场,进而影响相邻结构的响应,突出了考虑土壤与城市相互作用的重要性。该站在立柱底部最危险。地铁站和隧道的存在增加了附近的峰值地面加速度。

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