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Physical modelling of shaking table tests on dynamic soil-foundation interaction and numerical and analytical simulation

机译:动态地基相互作用的振动台试验物理建模及数值和模拟分析

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摘要

Earthquake geotechnical engineering has been recognised as an important branch of earthquake engineering. The analysis of soil-structure interaction may also be crucial when structural design problems are involved. Soil-structure interaction is a complex problem and needs to be analysed by physical and numerical modelling. Two physical models, consisting of a shallow foundation resting on a sand deposit, are tested on a shaking table to analyse soil-foundation interaction. The physical models are monitored, recording the time-histories of accelerations and displacements in the soil deposit and on the foundation. FEM codes are then employed to numerically model the resulting behaviour, using specific constitutive models and a new hand-made code based on the characteristic-line method. Simplified analytical approaches, still preferred in engineering, are discussed and developed. A comparison is made between the numerical and analytical results and they are also compared with the experimental results to validate the numerical modelling and analytical approaches and, in the new light of the Performance-Based-Design, evaluate their ability to predict foundation displacements (SLE) and bearing capacity (SLU). Finally, interesting aspects regarding the seismic behaviour of the shallow foundation on the sand deposit have been observed and noted.
机译:地震岩土工程被公认为地震工程的重要分支。当涉及结构设计问题时,对土-结构相互作用的分析也可能至关重要。土壤与结构的相互作用是一个复杂的问题,需要通过物理和数值模拟来分析。在振动台上测试了两个物理模型,包括搁在沙沉积物上的浅基础,以分析土壤-基础相互作用。监测物理模型,记录土壤沉积物和地基上的加速度和位移的时程。然后使用FEM代码,使用特定的本构模型和基于特征线方法的新手工代码对所得的行为进行数值建模。讨论并开发了简化的分析方法,这些方法在工程中仍是首选。比较数值结果和分析结果,并将它们与实验结果进行比较,以验证数值建模和分析方法,并在基于性能的设计的新视角下评估其预测基础位移的能力(SLE )和承载能力(SLU)。最后,已经观察到并注意到了有关浅层基础在砂矿上的地震行为的有趣方面。

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