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Probabilistic seismic demand assessment of residual drift for Buckling-Restrained Braced Frames as a dual system

机译:屈曲约束支撑框架作为双系统的残余漂移概率地震需求评估

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The main drawback of Buckling-Restrained Braced Frames (BRBFs) is low post-yield stiffness of steel cores that leads to concentrate large residual drift in a story after earthquakes. Residual, drifts not only cause serviceability issues but also increase the potential damage during aftershocks or future events. In this study seismic demands of low and mid-rise BRBFs and Dual-BRBFs were studied using the Probabilistic Seismic Demand Analysis (PSDA). By comparing demand hazard curves of frames it was concluded that using of BRBFs as a dual system could reduce the residual drift demand significantly. It can improve the revival capacity of such structures after earthquakes with low repairing cost. In the other part of this study, two different nonlinear models including a deteriorating model and a non-deteriorating model were used to explore the effect of degradation on Dual-BRBFs seismic demands. It was observed that the residual deformations are more sensitive to degradation than maximum deformations. Although the deterioration is not serious because of large BRBs stiffness which keeps MRFs in low range of nonlinearity. (C) 2015 Published by Elsevier Ltd.
机译:屈曲约束支撑框架(BRBF)的主要缺点是钢芯的屈服后刚度低,这导致地震后故事中的残余残余应力集中很大。残留的漂移不仅会导致可维修性问题,还会增加余震或未来事件中潜在的损坏。在本研究中,使用概率地震需求分析(PSDA)研究了中低层BRBF和双BRBF的地震需求。通过比较框架的需求风险曲线,可以得出结论,将BRBF用作双重系统可以显着降低残余漂移需求。它可以以较低的维修成本提高地震后此类结构的复兴能力。在本研究的另一部分中,使用两个不同的非线性模型(包括恶化模型和非恶化模型)来探讨退化对Dual-BRBFs地震需求的影响。观察到,残余变形比最大变形对降解更敏感。尽管由于大的BRB刚度而导致的恶化并不严重,这使MRF保持在较低的非线性范围内。 (C)2015年由Elsevier Ltd.出版

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