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Seismic Response of RC Moment Frame Including Topography-Soil-Structure Interaction

机译:RC力矩框架的地震反应,包括地形 - 土结构相互作用

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The reflections of waves collide with the slope, and the reduction in the ground lateral stiffness in the areas near the slope crest affects buildings. In this research, using the three-dimensional simulation, the seismic response of midrise reinforced concrete buildings located in the vicinity of slopes was investigated. The nonlinear soil behavior was simulated using an isotropic hardening elastoplastic hysteretic constitutive model, i.e., the hardening soil model with small-strain stiffness (HSS). The inelastic behavior for building components was considered using elastoplastic hinges. Results were presented as a ratio of topography-soil-structure interaction (TSSI) responses to soil-structure interaction (SSI) responses. The results showed that the topography of the slope increases the natural period range in the vicinity of the slope compared with cases without slopes. The maximum lateral displacement of the building and its maximum base shear force were 40% and 12% higher, respectively, in the TSSI mode than in the SSI mode.
机译:波浪与坡度碰撞的反射,坡峰附近的区域内的地面横向刚度的减小影响建筑物。在本研究中,使用三维模拟,研究了位于斜坡附近的中性钢筋混凝土建筑物的地震反应。使用各向同性硬化弹塑性滞后组织型模型模拟非线性土壤行为,即具有小应变刚度(HSS)的硬化土壤模型。使用弹塑性铰链考虑构建组件的无弹性行为。结果作为地形 - 土壤 - 结构相互作用(TSSI)对土结构相互作用(SSI)反应的比例表示。结果表明,与没有斜坡的情况相比,斜率的形貌增加了斜率附近的自然周期范围。在TSSI模式下,建筑物的最大横向位移及其最大基剪力分别比在SSI模式下的40%和12%。

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