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A new discrete macro-element in an analytical platform for seismic assessment of unreinforced masonry buildings

机译:分析平台中的一种新的离散宏观元素,用于对未加固的砖石建筑进行地震评估

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摘要

This paper proposes a practice-oriented platform for numerical simulation of Unreinforced Masonry (URM) buildings. It is based on introducing a new two-dimensional discrete model compatible with most existing structural analysis softwares. The proposed platform comprises of two individual two-dimensional macro-elements, a basic macro-element for modeling the piers and spandrels and a rigid-interface macro-element for modeling the nodal regions. A complete set of constitutive equations and behavioral specifications is proportionally characterized and discussed for the basic macro-element based on its phenomenology and the past experimental studies. The proposed approach provides a rather simple and efficient platform for linear or nonlinear static and dynamic analyses by considering the in plane behavior of the URM panels. The validation of the proposed analytical platform is conducted using the results of the past experimental tests on a considerable number of piers, spandrels and a perforated wall. The comparisons indicate that the predicted failure mode and hysteretic behavior as well as the ultimate strength and displacement capacity of these specimens are in a satisfactory agreement. In particular, derivation and interpretation of the results in the proposed approach are straightforward and simple; hence, engineers can use this approach for seismic design or retrofit studies. The proposed platform can be further developed and effectively used for modeling a large building or numerous buildings. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文为无筋砌体(URM)建筑的数值模拟提供了一个面向实践的平台。它基于引入与大多数现有结构分析软件兼容的新的二维离散模型。所提出的平台包括两个单独的二维宏元素,一个用于对墩和跨度进行建模的基本宏元素,以及用于对节点区域进行建模的一个刚性界面宏元素。根据基本宏观元素的现象学和过去的实验研究,按比例表征和讨论了完整的本构方程和行为规范。通过考虑URM面板的平面行为,该方法为线性或非线性静态和动态分析提供了一个相当简单有效的平台。拟议的分析平台的验证是使用过去的实验测试结果对大量的墩,翼span和穿孔墙进行的。比较表明,这些样品的预测破坏模式和滞后行为以及极限强度和位移能力都令人满意。特别地,在所提出的方法中对结果的推导和解释是简单明了的。因此,工程师可以使用这种方法进行抗震设计或改造研究。所提出的平台可以进一步开发并有效地用于对大型建筑物或众多建筑物进行建模。 (C)2017 Elsevier Ltd.保留所有权利。

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