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Evaluation of various seismic response analysis methods for underground structures in saturated sand

机译:饱和沙子地下结构各种地震反应分析方法的评价

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Underground structures in liquefiable saturated sand are prone to earthquake damage. Various simplified pseudo-static seismic response analysis methods for underground structures have been recommended by current design codes and guidelines, but lack adequate systematic validation in liquefiable ground. In this study, the effectiveness of four categories of simplified pseudo-static methods in saturated sand are evaluated. These methods include a displacement-based method, a force-based method, a F(flexibility ratio)-R(racking ratio) method, and a detailed equivalent static method. High-fidelity dynamic analysis of circular and rectangular cross-section underground structures in non-liquefiable and liquefiable ground under different input ground motions are conducted, using a validated plasticity constitutive model for large post-liquefaction deformation of sand, to serve as a basis for the evaluation. Although the pseudo-static methods can generally provide adequate analysis results for underground structures in non-liquefiable ground, especially the displacement-based method, their performance in saturated sand are generally poor. The deviation of pseudo-static analysis results from reality stems from their inadequacies in considering the effects of dynamic soil-structure interaction in liquefiable ground. Temporal and spatial variability of soil-structure interaction in saturated sand, caused by the accumulation of excess pore pressure and subsequent decrease in soil effective stress and constraint on underground structures, are not considered in pseudo-static analysis methods. Modifications to the pseudo-static analysis methods and high-fidelity dynamic analysis methods are suggested to be adopted for the evaluation of the seismic response of underground structures in liquefiable ground.
机译:液化饱和砂中的地下结构容易发生地震损坏。目前的设计代码和指导推荐了用于地下结构的各种简化的伪静态地震响应分析方法,但缺乏在液化地面上充足的系统验证。在该研究中,评估了四类简化的伪静态方法在饱和砂中的有效性。这些方法包括基于位移的方法,基于力的方法,F(柔韧比)-R(机架比)方法和详细的等效静态方法。在不同输入接地运动下的圆形和矩形横截面地下结构的高保真动态分析,采用验证的可塑性本构模型进行了大型液化砂液变形,作为基础评估。虽然伪静态方法通常可以提供足够的分析结果,但是在不液化地面中的地下结构,特别是基于位移的方法,它们在饱和砂中的性能通常差。伪静态分析的偏差来自现实的偏离源于考虑液态磨实动态土结构相互作用的影响。在伪静态分析方法中不考虑由过量孔隙压力的积累和随后的土壤有效应力和限制的饱和砂中土壤结构相互作用的时间和空间变异。建议对伪静态分析方法和高保真动态分析方法进行修改,以评估液化基质地下结构的地震反应。

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