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Probabilistic Robustness Assessment of Pre-Northridge Steel Moment Resisting Frames

机译:北岭前钢制耐弯框架的概率稳健性评估

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This paper investigates the robustness of moment-resisting steel frames that are typical of building construction in seismic regions before the 1994 Northridge earthquake against progressive (disproportionate) collapse. Uncertainties in the collapse demands and the resisting capacities of the connections in the frames are modeled probabilistically. The dominant connection failure mode, which involves fracture of the weld connecting the beam and column flanges under scenarios involving sudden column loss, is developed using a J-integral formulation of fracture demand and is characterized probabilistically. The connection behavior model is validated using connection test data from the SAC Project on steel frames conducted following the Northridge earthquake. The robustness of two three-story steel frames designed in the SAC Project is assessed by utilizing (a) the requirements in the new Unified Facilities Criteria (UFC), and (b) a system reliability analysis. This analysis reveals that steel moment frames with connections similar to those found in pre-Northridge building construction may not meet the UFC requirements for general structural integrity following notional column removal.
机译:本文研究了抗力矩钢框架的坚固性,这种抗力钢构架是1994年Northridge地震发生前(不成比例的)倒塌之前地震地区建筑的典型特征。塌陷需求的不确定性和框架中连接的抵抗能力是概率模型。主要的连接失效模式是在涉及突然的立柱损失的情况下涉及连接梁和立柱法兰的焊缝断裂,它是使用断裂需求的J积分公式开发的,并具有概率特征。使用来自SAC项目的连接测试数据对Northridge地震后进行的钢构架上的连接行为模型进行了验证。通过利用(a)新的统一设施标准(UFC)中的要求和(b)系统可靠性分析,评估了SAC项目中设计的两个三层钢框架的坚固性。该分析表明,与名义上的Northridge建筑结构相似的钢制矩型框架在拆除名义柱后可能无法满足UFC对整体结构完整性的要求。

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