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Seismic Vulnerability of Low- and Mid-Rise Reinforced Concrete Buildings in Malaysia Designed by Considering Only Gravity Loads

机译:仅考虑重力荷载而设计的马来西亚中低层钢筋混凝土建筑的地震易损性

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摘要

This study focuses on seismic vulnerability assessment of reinforced concrete buildings designed by considering only gravity loads. Fragility curves are developed for a three-story reinforced concrete office frame building and a four-story reinforced concrete school building with unreinforced masonry infill walls representative of the essential facilities in Malaysian Peninsula. A simplified modeling approach is adopted for fragility analysis, which can effectively reduce the computational effort. A set of fragility curves are developed in terms of peak ground acceleration with lognormal cumulative distribution functions. The fragility analysis shows that the seismic performance of the structures met the desirable performance level recommended by current seismic code, demonstrating low vulnerability of the structures within Malaysian Peninsula. It is also shown that the soil condition should be taken into consideration for effective seismic vulnerability assessment. Finally, the fragility curves developed in this study are compared to those of HAZUS.
机译:本研究的重点是仅考虑重力荷载而设计的钢筋混凝土建筑物的地震易损性评估。为三层钢筋混凝土办公框架建筑和四层钢筋混凝土教学建筑绘制了易碎性曲线,其中未增强的砖石填充墙代表了马来西亚半岛的基本设施。脆弱性分析采用简化的建模方法,可以有效减少计算量。根据峰值地面加速度和对数正态累积分布函数,开发了一组脆性曲线。脆性分析表明,该结构的抗震性能达到了现行地震法规所推荐的理想性能水平,表明该结构在马来西亚半岛内的脆弱性较低。还表明,应有效评估地震脆弱性时应考虑土壤条件。最后,将本研究中开发的脆性曲线与HAZUS的脆性曲线进行比较。

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