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Reliability assessment of RC shear wall-frame buildings subjected to seismic loading

机译:地震作用下钢筋混凝土剪力墙框架房屋的可靠性评估

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A considerable research is available on the seismic response of Reinforced Concrete (RC) shear wall-frame buildings, but the studies on the reliability of such buildings, with the consideration of human error, are limited. In the present study, a detailed procedure for reliability assessment of RC shear wall-frame building subjected to earthquake loading against serviceability limit state is presented. Monte Carlo simulation was used for the reliability assessment. The procedure was implemented on a 10-story RC building to demonstrate that the shear walls improve the reliability substantially. The annual and life-time failure probabilities of the studied building were estimated by employing the information of the annual probability of earthquake occurrence and the design life of the building. A simple risk-based cost assessment procedure that relates both the structural life-time failure probability and the target reliability with the total cost of the building was then presented. The structural failure probability (i.e., the probability of exceeding the allowable drift) considering human errors was also studied. It was observed that human error in the estimation of total load and/or concrete strength changes the reliability sharply.
机译:关于钢筋混凝土(RC)剪力墙框架建筑物的地震响应已有大量研究,但考虑到人为错误,对此类建筑物的可靠性的研究是有限的。在当前的研究中,提出了详细的评估RC剪力墙框架结构在地震荷载作用下极限使用寿命状态下可靠性的程序。蒙特卡罗模拟用于可靠性评估。该程序在10层的RC建筑物上执行,以证明剪力墙大大提高了可靠性。通过使用地震发生的年概率和建筑物的设计寿命的信息来估计研究建筑物的年失效寿命和终生失效概率。然后提出了一种简单的基于风险的成本评估程序,该程序将结构寿命失效概率和目标可靠性与建筑物的总成本相关联。还研究了考虑到人为错误的结构破坏概率(即超过允许漂移的概率)。已观察到,在估算总载荷和/或混凝土强度时的人为错误会极大地改变可靠性。

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