首页> 外文期刊>Journal of Constructional Steel Research >Seismic performance assessment of steel moment-resisting frames equipped with linear and nonlinear fluid viscous dampers with the same damping ratio
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Seismic performance assessment of steel moment-resisting frames equipped with linear and nonlinear fluid viscous dampers with the same damping ratio

机译:装有阻尼比相同的线性和非线性流体粘性阻尼器的钢制矩型框架的抗震性能评估

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This manuscript presents a comparative study between the seismic collapse performances of steel moment resisting frames (MRFs) with the same additional damping ratio while equipped with linear and nonlinear viscous dampers. Three steel moment-resisting frames of 6, 8 and 12 stories were designed based on ASCE 7-10 with and without dampers. The characteristics of the linear (alpha = 1) and nonlinear (alpha = 0.5) dampers were then assigned while assuming equal damping ratios (20% for the models of 6 and 8 stories, and 25% for the model of 12 stories). The sophisticated nonlinear model of the structures was then developed in Opensees considering both cyclic strength and stiffness deterioration with lumped plasticity as well as the linear and nonlinear dashpot for dampers while nonlinear geometry was included in all the models. The collapse probability was calculated using well-known incremental dynamic analysis (IDA) under far-field records. The paper demonstrates that the use of damper improves the performance of the steel MRFs and reduces the collapse probability in comparison with the conventional steel MRFs. Moreover, it was observed that steel MRFs with linear dampers have better collapse performance than steel MRFs with nonlinear dampers for the same damping ratio.
机译:该手稿对具有相同附加阻尼比,同时配备线性和非线性粘性阻尼器的钢制抗弯框架(MRF)的地震倒塌性能进行了比较研究。根据ASCE 7-10,设计了三个带有6、8和12层钢制抗弯框架,有无阻尼器。然后,在假定相等的阻尼比的情况下(在6层和8层模型中为20%,在12层模型中为25%),分配了线性(alpha = 1)和非线性(alpha = 0.5)阻尼器的特性。然后,在Opensees中开发了结构的复杂非线性模型,该模型考虑了循环强度和刚度退化以及集总塑性以及阻尼器的线性和非线性阻尼,同时所有模型都包含了非线性几何。在远场记录下使用众所周知的增量动态分析(IDA)计算坍塌概率。本文证明,与传统的钢制MRF相比,减震器的使用提高了钢制MRF的性能并降低了倒塌的可能性。此外,观察到,对于相同的阻尼比,具有线性阻尼器的钢MRF比具有非线性阻尼器的钢MRF具有更好的崩溃性能。

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