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Importance of kinematic interaction in the seismic vulnerability assessment of pile-supported buildings

机译:运动相互作用在桩支撑建筑物地震脆弱性评估中的重要性

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摘要

This paper reviews some aspects of pile-soil kinematic interaction in light of recent research findings. First, kinematic pile bending is examined, recalling some of the relevant contributions on the subject, and then comparing available methods with recent advanced numerical and experimental studies. A general procedure for the practical application of simplified formulae, taking into account nonlinear soil behavior, is discussed, and it is shown that the above formulae compare well with the available benchmarks. Based on the accumulated theoretical and experimental evidence, some suggestions for future code revision are also provided. Second, the paper focuses on the change of the free-field motion generated by pile-soil kinematic interaction, pointing out that the presence of piles usually leads to a reduction of the seismic demand in the structure, and simple procedures to account for this effect are also suggested. Slender tall structures supported by small pile groups may represent an exception to this general trend, due to the rotational component of the Foundation Input Motion induced by piles.
机译:本文根据最近的研究发现,审查了桩土对互动互动的一些方面。首先,检查运动桩弯曲,回顾了对象的一些相关贡献,然后将可用方法与最近的先进数值和实验研究进行比较。考虑到非线性土壤行为的简化公式的实际应用的一般程序,并显示上述公式与可用的基准相比很好。根据积累的理论和实验证据,还提供了对未来代码修订的一些建议。其次,本文侧重于桩土对运动相互作用产生的自由场运动的变化,指出桩的存在通常会导致结构中的地震需求的降低,简单的程序来解释这种效果也建议。由于由桩引起的基础输入运动的旋转分量,小桩基支持的细长结构可能代表这种通用趋势的例外。

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