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首页> 外文期刊>International journal of architectural heritage >Numerical and Experimental Validation of a 3D Macro-Model for the In-Plane and Out-Of-Plane Behavior of Unreinforced Masonry Walls
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Numerical and Experimental Validation of a 3D Macro-Model for the In-Plane and Out-Of-Plane Behavior of Unreinforced Masonry Walls

机译:3D宏观模型对无筋砌体墙的面内和面外行为的数值和实验验证

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摘要

The behavior of historical UnReinforced Masonry (URM) buildings subjected to earthquake loading is usually governed by a complex interaction between the in-plane and out-of-plane response of masonry walls. In modern masonry building, the in-plane behavior of masonry walls is generally guaranteed in the structural design, but thin non-structural masonry infills are often vulnerable to out-of-plane actions. A reliable prediction of the combined in-plane and out-of-plane behavior of URM walls requires rigorous nonlinear finite element models, whose complexity and computational cost are generally unsuitable for current engineering applications, motivating the research of alternative numerical approaches. This article presents a study for validation of a 3D macro-model intended to simulate the combined in-plane and out-of-plane behavior of unreinforced masonry walls, against experimental results available in the literature and FEM simulations. The model is based on a three-dimensional macro-element whose kinematics is governed by seven degrees of freedom only. The mechanical behavior of the element is based on a fiber discretization approach that adopts basic material parameters. The performance of the proposed macro-element strategy is assessed by means of nonlinear static analyses performed on masonry walls, for which both numerical and experimental results are available in the literature.
机译:受地震荷载作用的历史性无筋砌体(URM)建筑物的行为通常受砌体墙的面内和面外响应之间复杂的相互作用所控制。在现代砌体建筑中,通常在结构设计中保证砌体墙的平面内行为,但是薄的非结构砌体填充物通常容易受到平面外作用。要对URM墙的平面内和平面外组合行为进行可靠的预测,就需要严格的非线性有限元模型,其复杂性和计算成本通常不适合当前的工程应用,从而推动了替代数值方法的研究。本文介绍了一项旨在验证3D宏模型的研究,该模型旨在模拟未加固砌体墙的平面内和平面外组合行为,而文献和FEM模拟中均未提供实验结果。该模型基于三维宏元素,其运动学仅受七个自由度支配。元件的机械性能基于采用基本材料参数的纤维离散化方法。拟议的宏单元策略的性能是通过对砌体墙进行非线性静态分析来评估的,文献中均提供了数值和实验结果。

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