Application of Soil Structure Interaction on Building with Basement using Nonlinear Soil Springs

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引用次数: 0

Abstract

In a typical building design, the interaction between building and surrounding soils is often ignored. Since soil is deformable and has limited capacity to resist loads, this interaction, called soil-structure interaction (SSI), could alter building responses, especially during earthquake loadings for buildings with significant basement depths. In this study, a 10-story reinforced concrete building with 3-level basement was used to evaluate the effects of SSI on building during earthquakes. Dynamic time response analyses were performed using earthquake time histories scaled to a design response spectrum for a Surabaya, Indonesia, location. Soil responses during earthquakes were modeled using nonlinear hysteresis normal and elastic-perfectly plastic frictional soil springs, developed using the hardening soil with small strain stiffness model. Depth-varying ground motions were also applied along the basement depth. The results show inconclusive SSI effects, where some of the time histories produce greater base shears and inter-story drifts when SSI is considered, while others show the opposite results.
非线性土弹簧在带地下室建筑土-结构相互作用中的应用
在典型的建筑设计中,建筑与周围土壤之间的相互作用往往被忽视。由于土壤是可变形的,抵抗荷载的能力有限,这种被称为土壤-结构相互作用(SSI)的相互作用可能会改变建筑物的响应,尤其是在具有显著地下室深度的建筑物的地震荷载期间。在本研究中,以一栋10层、地下室为三层的钢筋混凝土建筑为例,评估了地震作用下SSI对建筑的影响。动态时间响应分析是使用地震时程进行的,地震时程按印度尼西亚泗水的设计响应谱缩放。采用非线性滞回法向和弹塑性摩擦土弹簧对地震期间的土壤响应进行了建模,该弹簧是使用具有小应变刚度的硬化土模型开发的。深度变化的地面运动也沿基底深度应用。结果显示了不确定的SSI效应,其中当考虑SSI时,一些时间历程会产生更大的基底剪切和层间漂移,而其他时间历程则显示出相反的结果。
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15
审稿时长
24 weeks
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