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Collapse mechanism analysis of historic masonry structures subjected to lateral loads: A comparison between continuous and discrete models

机译:横向载荷历史砌体结构的折叠机制分析:连续和离散模型的比较

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The aim of this paper is to show to what extent a simple constitutive model can adequately describe the collapse mechanisms of historic masonry structures under horizontal seismic loads. Referring to block masonry, the paper presents the formulation and the numerical implementation of a constitutive relationship for modeling masonry structures regarded at a macroscopic scale as homogenized anisotropic continuum. The macroscopic model is shown to retain memory of the mechanical characteristics of the joints and of the shape of the blocks. The overall mechanical properties display anisotropy and singularities in the yield surface, arising from the discrete nature of the block structure and the geometrical arrangement of the units. The model is formulated in the framework of multi-surface plasticity. It is implemented in a FE code by means of a minimization algorithm directly derived from the Haar-Karman principle.A sensitivity analysis to mechanical and geometrical parameters was carried out to show the influence on the predicted response of small-scale wall components from the literature. The model is then used for the analysis of a numerical case study Which is representative of a masonry church subjected to horizontal seismic action.The result of the model will be compared with those obtained by a rigid block model (RBM) of the same small-scale masonry prototypes and of the church building. In the paper, the results of the two models are discussed and analyzed in the way to highlight the weakness and the potentiality of the two different approaches. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文的目的是展示在多大程度上,简单的本构模型可以充分描述横向震动下历史砌体结构的崩溃机制。参考块砌块,本文呈现了组成型关系的制剂和数值实施,用于以宏观尺度为均质的各向异性连续体进行宏观尺度的构建型结构。宏观模型被示出为保持接头的机械特性的存储器和块的形状。从块结构的离散性和单位的几何排列产生屈服表面的整体机械性能显示各向异性和奇点。该模型在多表面可塑性框架中配制。它在FE代码中实现了通过直接从Haar-Karman原理衍生的最小化算法。进行了对机械和几何参数的灵敏度分析,以显示对来自文献的小规模墙部件的预测反应的影响。然后将该模型用于分析数字案例研究,该案例研究代表砌体教会的横向震动作用。模型的结果与通过相同小的刚性块模型(RBM)获得的模型的结果进行比较 - 规模砌体原型和教堂建筑。在本文中,在突出两种不同方法的弱点和潜力的方式中讨论并分析了两种模型的结果。 (c)2019 Elsevier Ltd.保留所有权利。

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