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Evaluation of Structural Robustness against Column Loss: Methodology and Application to RC Frame Buildings

机译:评估抗柱损失的结构稳健性:方法和在钢筋混凝土框架建筑中的应用

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摘要

A computational methodology is presented for evaluating structural robustness against column loss. The methodology is illustrated through application to reinforced concrete (RC) frame buildings, using a reduced-order modeling approach for three-dimensional RC framing systems that includes the floor slabs. Comparisons with high-fidelity finite-element model results are presented to verify the approach. Pushdown analyses of prototype buildings under column loss scenarios are performed using the reduced-order modeling approach, and an energy-based procedure is employed to account for the dynamic effects associated with sudden column loss. Results obtained using the energy-based approach are found to be in good agreement with results from direct dynamic analysis of sudden column loss. A metric for structural robustness is proposed, calculated by normalizing the ultimate capacities of the structural system under sudden column loss by the applicable service-level gravity loading and by evaluating the minimum value of this normalized ultimate capacity over all column removal scenarios. The procedure is applied to two prototype 10-story RC buildings, one employing intermediate moment frames (IMFs) and the other employing special moment frames (SMFs). The SMF building, with its more stringent seismic design and detailing, is found to have greater robustness.
机译:提出了一种计算方法,用于评估针对列损失的结构稳健性。通过对包括楼板的三维RC框架系统使用降阶建模方法,将其应用于钢筋混凝土(RC)框架建筑物来说明该方法。提出了与高保真有限元模型结果的比较以验证该方法。使用降阶建模方法对列损失情况下的原型建筑物进行下推分析,并采用基于能量的过程来解决与列突然损失相关的动态影响。发现使用基于能量的方法获得的结果与突然色谱柱损失的直接动态分析的结果非常吻合。提出了一种结构鲁棒性的度量,该度量是通过在适用的服务水平重力载荷下,在突然的立柱损失下规范结构系统的极限承载力,并通过评估在所有立柱拆除方案下该规范化的极限承载力的最小值来计算的。该程序适用于两座10层原型RC建筑物,一幢采用中间弯矩框架(IMF),另一幢采用特殊弯矩框架(SMF)。 SMF建筑物具有更严格的抗震设计和细节设计,具有更高的坚固性。

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