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The structural identification of the infill walls contribution in the dynamic response of framed buildings

机译:框架建筑物动态响应中填充墙体贡献的结构识别

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摘要

Reinforced concrete (RC) frame buildings containing unreinforced masonry infill walls are commonly used in structural systems around the world. The performance of this type of building can be significantly affected by the presence of infill walls according to their type and distribution in the plane and along the height as revealed by earthquakes. This paper presents data collection, system identification, and finite element modeling of an existing RC framed building designed for gravity loads and containing unreinforced masonry infill walls. Based on a previously carried out ambient vibration test, a three-dimensional finite element model, comprising infill walls and partitions, was successfully updated on the basis of the global modes identified by the in situ test, pointing out the important role of the nonstructural components for this type of building. The influence of the infill walls and partitions on the vibration period was examined, introducing a comparison with simple formulations for the period calculation suggested by codes or available in the literature. The updated model has been further used to assess an approach for an approximate estimation of the story and global stiffness of the building considering the effect of the secondary elements. The dynamic test with the model updating results an efficient procedure for a complete identification of the elastic behavior of the structure.
机译:含有未原始的砌体填充墙的钢筋混凝土(RC)框架建筑通常用于世界各地的结构系统。这种建筑物的性能可以通过根据其类型和平面分布和沿着地震所揭示的高度来显着影响填充墙壁的显着影响。本文介绍了专为重力载荷设计的现有RC框架建筑物的数据收集,系统识别和有限元建模,并含有未原始的砌体填充墙壁。基于先前进行的环境振动测试,在原位测试所识别的全局模式的基础上成功更新了三维有限元模型,包括填充墙和隔板,指出非结构组分的重要作用对于这种类型的建筑物。检查填充壁和隔板对振动周期的影响,与代码或文献中提供的时期计算的期间计算的简单配方进行了比较。更新的模型进一步用于评估考虑二次元素的效果的建筑物的故事和全局刚度的近似估计方法。使用模型更新的动态测试结果是完全识别结构的弹性行为的有效过程。

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