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Modeling approaches suitable for pushover analyses of RC structural wall buildings

机译:适用于钢筋混凝土结构墙建筑物的推覆分析的建模方法

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In the current paper the seismic performance of a regular multi-storey precast reinforced concrete structural wall building vertically connected with ordinary reinforcement is investigated. The structural walls have different cross section shapes (rectangular, "U", "L" and "C"). Some of the construction details of the structural joints connecting the precast walls horizontally and vertically are briefly described. Different modeling approaches for pushover analyses, from lower to higher levels of accuracy, have been applied in order to investigate the applicability of the calculation methods adopted to the study of buildings having non-rectangular structural walls. In particular the building has been analyzed with a shell model, implemented by the authors and denoted PARC model, a fiber-element model and a lumped-plasticity model, implemented by the authors and denoted LPA. The results obtained with the three models in terms of seismic response of the building proved to be consistent to each other. Hence, for this particular case, the lumped plasticity model presented, that can be simply applicable in the daily design practice, gave reliable results.
机译:在本文中,研究了与普通钢筋垂直连接的规则多层预制钢筋混凝土结构墙建筑物的抗震性能。结构壁具有不同的横截面形状(矩形,“ U”,“ L”和“ C”)。简要描述了水平和垂直连接预制墙的结构节点的一些构造细节。为了研究所采用的计算方法在研究具有非矩形结构墙的建筑物中的适用性,已采用了从较低到较高的准确性的不同的推覆分析建模方法。特别是,该建筑物已使用由作者实施并表示为PARC模型的壳模型,由作者实施并表示为LPA的纤维单元模型和集总塑性模型进行了分析。用这三个模型获得的关于建筑物地震响应的结果被证明是一致的。因此,对于这种特殊情况,所提出的集总可塑性模型可以简单地应用于日常设计实践中,从而给出了可靠的结果。

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