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Effect of vertical component of an earthquake on steel frames considering soil-structure interaction

机译:考虑土-结构相互作用的地震竖向分量对钢框架的影响

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The present study investigated the effects of vertical components of earthquakes on the responses of 5, 15, and 25 story steel frames by taking into account Soil-Structure Interaction (SSI). The frames were modeled on a fixed base and simulated using two shear waves velocities for the soil (100 and 250 m/s according to NEHERP soil code types E and D soils) using a cone model. The nonlinear behavior of the frames was investigated in the presence and absence of the vertical component of an earthquake and the effects of SSI were examined by comparing the results of the latter analysis with and without use of the cone model. The results showed that the vertical component and SSI can increase the axial force on columns by nearly 50%, the vertical displacement of the mid-point of the beams by nearly two-fold, drift of the stories by nearly 40%, and foundation rotation. Story shear was less affected. When soil type E and soil type D were compared, it was found that the effect of the vertical component of earthquakes on the dynamic response of the frames was generally significant.
机译:本研究通过考虑土壤-结构相互作用(SSI),研究了地震垂直分量对5、15和25层钢框架的响应的影响。在固定的基础上对框架进行建模,并使用两个圆锥波模型对土壤进行两个剪切波速度模拟(根据NEHERP土壤代码E和D类土壤分别为100和250 m / s)。在存在和不存在地震垂直分量的情况下,研究了框架的非线性行为,并通过比较使用和不使用锥体模型时后者分析的结果来检验了SSI的影响。结果表明,竖向分量和SSI可使柱上的轴向力增加近50%,梁中点的垂直位移增加近两倍,层间位移增加近40%,地基旋转。故事剪切的影响较小。当比较土壤类型E和土壤类型D时,发现地震垂直分量对框架动力响应的影响通常是显着的。

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