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On the role of equivalent strut models in the seismic assessment of infilled RC buildings

机译:等效支杆模型在钢筋混凝土建筑抗震评估中的作用

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The participation of masonry infill panel to the overall seismic resistance of a framed building has a significant variation according to the specific mechanical characteristics of the infill, the geometrical distribution within the building and the local interaction among the panel and the surrounding primary RC elements. Especially in the case of structure designed only for vertical loads, essence of the infill can be decisive under an unexpected earthquake, providing an additional contribution to the strength and to the stiffness. On the other side, this beneficial role is often accompanied by the modification of the global collapse mechanisms, with the appearance of brittle failure modes. In the present paper, an existing RC framed building for which a good level of knowledge was available, including a wide experimental database, was chosen as a case study. A reference frame was considered for performing nonlinear static analyses aimed at investigating some significant aspects about the modelling of the infill and the relapse induced by the related computational choices on the structural response. In particular, it is faced the sensitivity analysis about specific parameters involved in the definition of the equivalent strut models: the width b_wof the strut; the constitutive Force-Displacement law of the panel; the number of struts adopted to simulate the panel.
机译:根据填充物的具体机械特性,建筑物内的几何分布以及面板和周围主要RC元素之间的局部相互作用,砌体填充面板对框架建筑物的整体抗震性的参与会有很大变化。特别是在仅针对垂直载荷设计的结构中,填充物的本质在意外地震下可能具有决定性作用,从而对强度和刚度做出了额外贡献。另一方面,这种有益作用通常伴随着整体崩溃机制的修改,并伴有脆性破坏模式的出现。在本文中,选择了一个现有的RC框架建筑作为案例研究,该建筑具有良好的知识水平,包括广泛的实验数据库。考虑了进行非线性静态分析的参考框架,旨在研究关于填充物建模和结构响应的相关计算选择引起的复发的一些重要方面。特别是,面对等效支杆模型定义中涉及的特定参数的敏感性分析:支杆的宽度b_w;支杆的宽度b_w;支杆的宽度b_w。小组的本构力-位移法;模拟面板所采用的支柱数量。

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