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2D pixel homogenized limit analysis of non-periodic masonry walls

机译:非周期砌体墙的2D像素均匀化极限分析

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摘要

This paper presents a novel and straightforward procedure for the derivation of homogenized failure surfaces for non-periodic masonry. The most innovative feature of this procedure is the automatic generation of a convenient finite element mesh directly from the sketch of the considered masonry panel, based on the so-called "pixel strategy" that converts each pixel into an element. An upper bound limit analysis problem coupled with homogenization is then solved by aptly formulating it as a linear programming problem. Another main feature is the implementation of a reduced formulation of such problem (called "master-slave approach") so that the number of unknown variables is reduced and, consequently, the computational times needed for the extraction of the homogenized failure surfaces are shortened as well. A simple procedure is also implemented for a quick identification of the statistical Representative Element of Volume (or REV) for a non-periodic masonry panel. The REV is the smallest portion of a composite material that includes all the physical and geometrical characteristics needed for its complete description. The reliability of the procedure is tested by investigating six case studies displaying different degrees of non-periodicity, extracting and critically commenting the results obtained in terms of homogenized failure surfaces and failure modes. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一种非直立砌体均质破坏面推导的新颖直接方法。此过程的最具创新性的特征是,根据所谓的“像素策略”,直接从所考虑的砌体面板的草图中自动生成方便的有限元网格,该网格将每个像素转换为一个元素。然后通过适当地将其公式化为线性规划问题来解决与均质化相关联的上限分析问题。另一个主要特征是减少了对此类问题的表述(称为“主从方法”),从而减少了未知变量的数量,因此,提取均质故障面所需的计算时间减少了也缩短了。还实现了一个简单的程序,用于快速识别非周期性砌体面板的统计代表体积(或REV)。 REV是复合材料的最小部分,包括完整描述所需的所有物理和几何特性。通过调查六个案例研究来测试该过程的可靠性,这些案例研究显示了不同程度的非周期性,提取并严格注释了根据均质的破坏面和破坏模式获得的结果。 (C)2019 Elsevier Ltd.保留所有权利。

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