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Effect of vertical ground motions and overburden depth on the seismic responses of large underground structures

机译:垂直地面运动和覆盖层深度对大型地下结构地震响应的影响

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Underground structures such as subway stations, which are operated at a high capacity and frequency, are prone to damage by large earthquakes. To study the seismic performance of underground structures, this paper presents a three-dimensional nonlinear finite element simulation of the seismic behavior of subway stations, considering the influence of vertical ground motions and structural overburden depth. The results show that the consideration of vertical seismic motions increases the structural seismic responses; the influence extent depends greatly on the characteristics of the vertical seismic excitation. The station's overburden depth influences the structural response significantly and alters the structural resonant frequency; the influence of the structural burial depth is a complex problem. Besides, it is deduced that the influence of structural burial depth tends to vanish with an increase in the induced frequency, particularly for deeper stations; more attention should be paid to deeper structures built on soft sites or deeper structures that suffer from long-period seismic shaking; the stiffer tunnel experiences less deformation, and the lateral earth pressure applied on the stiffer tunnel is higher. A few results in this paper are consistent with a damage survey of the Daikai subway station damaged in the 1995 Kobe Earthquake.
机译:高容量和高频率运行的地下结构(如地铁站)容易受到大地震的破坏。为了研究地下结构的抗震性能,考虑到垂直地面运动和结构上覆层深度的影响,本文提出了地铁车站地震行为的三维非线性有限元模拟。结果表明,考虑竖向地震运动会增加结构的地震反应。影响程度在很大程度上取决于垂直地震激励的特性。测站的上覆深度显着影响结构响应并改变结构共振频率。结构埋深的影响是一个复杂的问题。此外,据推断,随着诱导频率的增加,结构埋藏深度的影响趋于消失,特别是对于较深的站;应更加注意在软地盘上建造的较深结构或遭受长期地震震动的较深结构;较硬的隧道变形较小,施加在较硬的隧道上的侧向土压力较高。本文的一些结果与1995年神户地震中被损坏的Daikai地铁站的损坏调查一致。

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