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首页> 外文期刊>Soils and foundations >NUMERICAL SIMULATION OF MODEL TESTS OF PIER-SHALLOW FOUNDATION SYSTEMS SUBJECTED TO EARTHQUAKE LOADS USING AN ELASTO-UPLIFT-PLASTIC MACRO ELEMENT
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NUMERICAL SIMULATION OF MODEL TESTS OF PIER-SHALLOW FOUNDATION SYSTEMS SUBJECTED TO EARTHQUAKE LOADS USING AN ELASTO-UPLIFT-PLASTIC MACRO ELEMENT

机译:弹塑性宏单元对地震作用下墩浅基础系统模型试验的数值模拟

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References(23) Cited-By(1) A dynamic analysis model for the nonlinear behavior of a shallow foundation subjected to seismic loads is developed. A macro-element approach is revised assuming elasto-uplift-plastic behavior, in which uplifting and coupling effects of vertical, horizontal, and moment loads are taken into account. Large-scale shake table experiments of model pier footings are also conducted and simulated using the revised macro-element model. The numerical result reveals that the shape of the hysteresis loops for coupled load-displacement relationships is predicted very well, including the effects of uplift. In addition, the revised model can account for settlement with some inclination that has accumulated during the excitation.
机译:参考文献(23)引用了(1)建立了地震作用下浅基础非线性行为的动力学分析模型。修改了宏单元方法,假设其为弹塑性-塑性-塑性行为,其中考虑了垂直,水平和矩荷载的提升和耦合效应。还使用修正的宏元模型对模型墩脚进行了大规模的振动台试验并进行了仿真。数值结果表明,对耦合的载荷-位移关系的磁滞回线的形状进行了很好的预测,包括隆起的影响。另外,修改后的模型可以考虑在激励过程中积累的一些倾斜的沉降。

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