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Influence of concurrent horizontal and vertical ground excitations on the collapse margins of non-ductile RC frame buildings

机译:水平和垂直同时进行的地面激励对非延性RC框架建筑物倒塌裕度的影响

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摘要

Recent earthquakes worldwide show that a significant portion of the earthquake shaking happens in the vertical direction. This phenomenon has raised significant interests to consider the vertical ground motion during the seismic design and assessment of the structures. Strong vertical ground motions can alter the axial forces in the columns, which might affect the shear capacity of reinforced concrete (RC) members. This is particularly important for non-ductile RC frames, which are very vulnerable to earthquake-induced collapse. This paper presents the detailed nonlinear dynamic analysis to quantify the collapse risk of non-ductile RC frame structures with varying heights. An array of non-ductile RC frame architype buildings located in Los Angeles, California were designed according to the 1967 uniform building code. The seismic responses of the architype buildings subjected to concurrent horizontal and vertical ground motions were analyzed. A comprehensive array of ground motions was selected from the PEER NGA-WEST2 and Iran Strong Motions Network database. Detailed nonlinear dynamic analyses were performed to quantify the collapse fragility curves and collapse margin ratios (CMRs) of the architype buildings. The results show that the vertical ground motions have significant impact on both the local and global responses of non-ductile RC moment frames. Hence, it is crucial to include the combined vertical and horizontal shaking during the seismic design and assessment of non-ductile RC moment frames.
机译:全球最近的地震表明,地震的很大一部分发生在垂直方向。这种现象引起了人们极大的兴趣,要在地震设计和结构评估过程中考虑垂直地面运动。强烈的垂直地面运动会改变圆柱中的轴向力,这可能会影响钢筋混凝土(RC)构件的剪切能力。这对于非延性RC框架尤为重要,因为非延性RC框架非常容易遭受地震引起的倒塌。本文提出了详细的非线性动力学分析,以量化具有高度变化的非延性RC框架结构的倒塌风险。根据1967年统一建筑规范,设计了一系列位于加利福尼亚洛杉矶的非延性RC框架原型建筑。分析了同时发生水平和垂直地面运动的原型建筑物的地震反应。从PEER NGA-WEST2和Iran Strong Motions网络数据库中选择了一系列地震动。进行了详细的非线性动力学分析,以量化原型建筑的倒塌脆弱性曲线和倒塌裕度比(CMR)。结果表明,竖向地面运动对非延性RC矩框架的局部和整体响应都具有显着影响。因此,至关重要的是在地震设计和非延性RC矩框架评估中包括垂直和水平振动的组合。

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