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Verification of performance criteria using shake table testing for the vulnerability assessment of reinforced concrete buildings

机译:使用振动台测试对钢筋混凝土建筑物的脆弱性进行评估的性能标准

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摘要

Shake table experiments are conducted to support the selection of performance criteria and to verify the inelastic modeling approach for developing the fragility functions of reinforced concrete buildings. Two frames representing the lateral force-resisting system of a preseismic code building are tested under the effect of an earthquake record with increasing severity. Shear failure is detected in columns at a PGA of 1.28g before other failure modes, which was effectively predicted by the fiber-based numerical model, performance criteria, and shear supply approaches adopted for vulnerability assessment. Five buildings, ranging from 2 to 40 stories, are then assessed under the effect of far-field and near-source earthquake records, considering the experimentally verified modeling approach and shear failure prediction models that account for flexural ductility and shear-axial force interaction. The impact of considering shear response on the vulnerability assessment results is considerable, particularly for the lower-height wall structures when subjected to the near-source earthquake scenario. Higher modes dominate the behavior of wall structures, principally under the latter seismic scenario, and shift their response to shear-controlled. Therefore, seismic scenario-structure-based performance criteria are adopted for developing a range of analytically derived, experimentally verified fragility functions for the earthquake loss estimation of buildings with different characteristics.
机译:进行振动台试验以支持性能标准的选择,并验证用于开发钢筋混凝土建筑物的脆性功能的非弹性建模方法。在地震记录的作用下,随着强度的提高,测试了代表地震规范建筑物抗侧向力系统的两个框架。在其他失效模式之前,在PGA为1.28g的柱子中检测到剪切失效,这是通过基于纤维的数值模型,性能标准和用于脆弱性评估的剪切供应方法有效预测的。然后,考虑到经过实验验证的建模方法和考虑了挠性延性和剪力-轴向力相互作用的剪力破坏预测模型,在远场和近源地震记录的影响下评估了2到40层不等的五座建筑物。考虑到剪力响应对脆弱性评估结果的影响是相当大的,尤其是在遭受近震地震的情况下对于低矮的墙体结构。较高的模式主要在后一种地震情况下支配墙壁结构的行为,并将其响应转移到剪切控制下。因此,采用基于地震情景结构的性能标准来开发一系列分析得出的,经过实验验证的脆弱性函数,以评估具有不同特征的建筑物的地震损失。

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