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Low-cost retrofitting solutions for RC frames using masonry infill panels

机译:使用砌体填充板的RC框架的低成本改造解决方案

摘要

A large number of reinforced concrete (RC) frame structures built in earthquake-prone areas such as Haiti are vulnerable to strong ground motions. Structures in developing countries need low-cost seismic retrofit solutions to reduce their vulnerability. This paper investigates the feasibility of using masonry infill walls to reduce deformations and damage caused by strong ground motions in brittle and weak RC frames designed only for gravity loads. A numerical experiment was conducted in which several idealized prototypes representing RC frame structures of school buildings damaged during the Port-au-Prince earthquake (Haiti, 2010) were strengthened by adding elements representing masonry infill walls arranged in different configurations. Each configuration was characterized by the ratio Rm of the area of walls in the direction of the ground motion (in plan) installed in each story to the total floor area. The numerical representations of these idealized RC frame structures with different values of Rm were (hypothetically) subjected to three major earthquakes with peak ground accelerations of approximately 0.5g. The results of the non-linear dynamic response analyses were summarized in tentative relationships between Rm and four parameters commonly used to characterize the seismic response of structures: interstory drift, Park and Ang indexes of damage, and total amount of energy dissipated by the main frame. It was found that Rm=4% is a reasonable minimum design value for seismic retrofitting purposes in cases in which available resources are not sufficient to afford conventional retrofit measures.
机译:在海地等地震多发地区建造的大量钢筋混凝土(RC)框架结构很容易受到强烈的地震动。发展中国家的建筑物需要低成本的地震改造解决方案,以降低其脆弱性。本文研究了使用砖石填充墙来减少仅用于重力荷载的脆性和弱RC框架中强地面运动引起的变形和破坏的可行性。进行了数值实验,其中通过添加代表以不同配置排列的砌体填充墙的元素,来增强一些理想的原型,这些原型代表在太子港地震中受损的学校建筑的RC框架结构(海地,2010年)。每种配置的特征是,沿每个楼层安装的地面运动(在平面图中)的墙壁面积Rm与总建筑面积之比Rm。这些Rm值不同的理想RC框架结构的数值表示(假设地)经历了三次大地震,其峰值地面加速度约为0.5g。非线性动态响应分析的结果总结为Rm与通常用于表征结构地震响应的四个参数之间的暂定关系:层间漂移,Park和Ang破坏指标以及主机消耗的总能量。发现在可用资源不足以提供常规翻新措施的情况下,Rm = 4%是用于地震翻新目的的合理最小设计值。

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