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A non-linear masonry infill macro-model to represent the global behaviour of buildings under cyclic loading

机译:非线性砌体填充宏模型,用于表示建筑物在循环荷载下的整体行为

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摘要

The presence of masonry infill walls in RC buildings is very common. However, and even today, in the design of new buildings and in the assessment of existing ones, these infill walls are usually considered as non-structural elements and their influence in the structural response is generally ignored. For horizontal loading, infill panels can drastically modify the response, attracting forces to parts of the structure that have not been designed to resist them. This paper presents an improved non-linear numerical simulation model for the influence of the masonry infill walls in the seismic behavior of structure. The model is implemented in the PORANL program. After the implementation and calibration of the proposed masonry model, a series of non-linear dynamic analyses of a building representative of Modern Architecture in Europe were carried out. The main objective was to investigate the behavior of this type of building, and any weakness under seismic loading. The building geometry and the dimensions of the RC elements and infill walls were set in the original project, and confirmed in the technical visits. The building under study has nine storeys and the structure is mainly composed of 12 plane frames oriented in the transversal direction. The building was analyzed with a simplified plane model, for each direction, and the existing infill panels were looked at in accordance with their dimensions and location. The earthquake action adopted in this study was simulated through three series of artificially generated earthquakes, for a medium/high seismic risk scenario in Europe. © 2008 Springer Science+Business Media, B.V.
机译:钢筋混凝土建筑物中的砖石填充墙很常见。然而,甚至在今天,在新建筑的设计和对现有建筑的评估中,这些填充墙通常被视为非结构元素,并且它们在结构响应中的影响通常被忽略。对于水平加载,填充面板可以极大地改变响应,将力吸引到尚未设计为抵抗它们的结构部分。针对砌体填充墙对结构抗震性能的影响,本文提出了一种改进的非线性数值模拟模型。该模型在PORANL程序中实现。在对所提出的砌体模型进行实施和校准之后,对欧洲现代建筑的代表进行了一系列非线性动力分析。主要目的是调查这类建筑物的行为以及地震荷载作用下的任何弱点。 RC构件和填充墙的建筑几何形状和尺寸在原始项目中设置,并在技术访问中得到确认。研究中的建筑物有9层,结构主要由12个横向方向的平面框架组成。使用简化的平面模型对建筑物的各个方向进行了分析,并根据其尺寸和位置查看了现有的填充面板。针对欧洲的中/高地震风险场景,本研究采用的地震作用是通过三个系列的人工地震来模拟的。 ©2008 Springer Science + Business Media,B.V.

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