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Analysis of the Second Order Effect of the SSI on the Building during a Seismic Load

机译:分析地震荷载中SSI对建筑物的二阶效应

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The type and the properties of the soil can potentially intensify the internal forces on buildings during seismic loads. To predict the effects of the soil parameters on the soil–structure interaction of buildings, it is necessary to consider the soil–structure interaction (SSI) in the modeling process. Therefore, this document aims to evaluate the seismic effect on the maximal displacement and inter-story drift, and evaluate the behavior of buildings under the second-order effect known in the literature as the P-delta effect. For this purpose, three cases of buildings with 5, 10 and 15 stories were modelled using a FLAC 2D finite-difference element calculation software with infinite soil conditions, including five types of base with four types of soil (one cohesive soil and three non-cohesive soils) considering the soil–structure interaction and a fixed base (without soil–structure interaction). According to the results for the above-mentioned boundary, as the height of the building increases and due to the weak properties of the soil, we notice that the maximal displacements and inter-story drift increase considerably. To that purpose, we recommend considering the second-order effect in seismic design, especially for non-cohesive soil.
机译:土壤的类型和性质可能会在地震载荷期间的建筑物上的内部力量增强。为了预测土壤参数对建筑物的土壤结构相互作用的影响,有必要考虑建模过程中的土壤结构相互作用(SSI)。因此,本文件旨在评估对最大位移和故事际漂移的地震影响,并评估文献中已知的二阶效果下建筑物的行为作为p-δ效应。为此目的,使用具有无限土壤条件的FLAC 2D有限差分元件计算软件进行建模三种建筑物,包括无限土壤条件,包括五种类型的土壤(一个凝聚力土壤和三种非考虑土壤 - 结构相互作用和固定碱(没有土 - 结构相互作用)的粘性土壤。根据上述边界的结果,随着建筑物的高度增加并且由于土壤的弱特性,我们注意到最大位移和故事间漂移大大增加。为此目的,我们建议考虑地震设计中的二阶效果,特别是对于非粘性土壤。

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