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An improved pseudo-static method for seismic resistant design of underground structures

机译:一种改进的拟静力地下结构抗震设计方法

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This paper describes a commonly used pseudo-static method in seismic resistant design of the cross section of underground structures. Based on dynamic theory and the vibration characteristics of underground structures, the sources of errors when using this method are analyzed. The traditional seismic motion loading approach is replaced by a method in which a one-dimensional soil layer response stress is differentiated and then converted into seismic live loads. To validate the improved method, a comparison of analytical results is conducted for internal forces under earthquake shaking of a typical shallow embedded box-shaped subway station structure using four methods: the response displacement method, finite element response acceleration method, the finite element dynamic analysis method and the improved pseudo-static calculation method. It is shown that the improved finite element pseudo-static method proposed in this paper provides an effective tool for the seismic design of underground structures. The evaluation yields results close to those obtained by the finite element dynamic analysis method, and shows that the improved finite element pseudo-static method provides a higher degree of precision.
机译:本文介绍了地下结构抗震设计中常用的伪静力法。基于动力学理论和地下结构的振动特性,分析了该方法的误差来源。传统的地震运动加载方法被一种方法分解,该方法将一维土层响应应力微分然后转换为地震活荷载。为了验证该改进方法的有效性,采用响应位移法,有限元响应加速度法,有限元动力分析四种方法,对典型的浅埋箱形地铁车站结构在地震作用下的内力进行了分析比较。方法和改进的伪静态计算方法。结果表明,本文提出的改进的有限元拟静力方法为地下结构的抗震设计提供了有效的工具。评估得出的结果接近于通过有限元动力学分析方法获得的结果,并且表明改进的有限元伪静态方法提供了更高的精度。

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