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A quantitative assessment of the NCHRP 611 method for soil-structure interaction analysis of buried circular structures & a proposed improvement

机译:NCHRP 611方法对地下圆形结构土-结构相互作用分析的定量评估及改进建议

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The recent National Cooperative Highway Research Program (NCHRP) Report 611 titled "Seismic Analysis and Design of Retaining Walls, Buried Structures, Slopes, and Embankments" has been widely adopted as a guideline in the analysis design of buried/embedded structures due to its computational simplicity and broadly accepted accuracy for simple soil-structure configurations. However, the method is not without shortcomings. In particular, the NCHRP method is not sensitive to the inherently broadband frequency content of seismic input excitations, soil heterogeneities, and potential kinematic interaction effects. The present study seeks to quantitatively assess the brackets of the validity of the NCHRP 611 method-specifically, for soil-structure analyses of buried circular structures, and offers an improvement that is simple to implement. This is achieved through parametric studies using detailed nonlinear finite element simulations involving a broad range of ground motions, and soil and structural properties. The simulations are carried out with models that are parametric variations of a model that has been validated in a prior centrifuge testing program on embedded structures. A refined version of the NCHRP 611 method, which uses maximum shear strains obtained through one-dimensional site response analyses, is shown to produce fairly accurate results for nearly all of the different cases considered in the parametric studies. The basic version of the method, however, which is based on rough estimates of maximum shear strain and effective soil modulus, is observed to be highly inaccurate.
机译:最近的国家公路合作研究计划(NCHRP)第611号报告标题为“挡土墙,埋入结构,斜坡和路堤的地震分析和设计”,由于以下原因,已被广泛用作埋入/嵌入结构分析设计的指南:简单的土壤结构配置,其计算简单性和广泛接受的准确性。但是,该方法并非没有缺点。特别是,NCHRP方法对地震输入激励固有的宽带频率含量,土壤异质性和潜在的运动学相互作用效应不敏感。本研究旨在定量评估NCHRP 611方法的有效性,特别是用于埋入式圆形结构的土壤结构分析,并提供易于实现的改进。这是通过使用详细的非线性有限元模拟进行参数研究来实现的,该模拟涉及广泛的地面运动以及土壤和结构特性。仿真是使用模型进行的,这些模型是模型的参数变体,该模型已在先前的嵌入式结构离心测试程序中得到验证。 NCHRP 611方法的改进版本使用了通过一维部位响应分析获得的最大剪切应变,显示出几乎可以在参数研究中考虑的所有不同情况下产生相当准确的结果。但是,该方法的基本版本是基于最大剪切应变和有效土壤模量的粗略估算,因此非常不准确。

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