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New vector-valued intensity measure for predicting the collapse capacity of steel moment resisting frames with viscous dampers

机译:新的矢量值强度度量用于预测带有粘性阻尼器的抗弯矩钢框架的倒塌能力

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摘要

Viscous Dampers (VDs), as a passive energy dissipation system, are increasingly applied for the seismic design and retrofit of structures. In general, probabilistic seismic assessment of structures with VDs is performed by traditional scalar Intensity Measures (IMs) such as pseudo-spectral acceleration at the first mode period of the structure, Sa(T-1). In this paper, the seismic collapse of steel Special Moment Resisting Frames (SMRFs) with VDs is assessed by 18 vector-valued IMs. The first component of the vector-valued IMs is Sa(T-1) and their second components are un-scalable. Incremental Dynamic Analyses (IDAs) are performed to compute the seismic collapse capacity, Sa(col), values of steel SMRFs with VDs. Then, the efficiency and sufficiency of the IMs for the prediction of the collapse capacity of the structures are studied, and (Sa(T-1), SaRatio(M-D)) is proposed as an advanced vector-valued IM that includes the spectral shape and Ground Motion (GM) duration effects. The results indicate that (Sa(T-1), SaRatio(M-D)) possesses high efficiency and sufficiency, and can reliably predict the collapse capacity of steel SMRFs with VDs.
机译:粘性阻尼器(VDs)作为一种被动能量消散系统,越来越多地用于结构的抗震设计和改造。通常,具有VD的结构的概率地震评估是通过传统的标量强度度量(IM)进行的,例如在结构的第一模态Sa(T-1)处的伪谱加速度。本文通过18个矢量值的IM评估了带有VD的钢制特殊抗弯框架(SMRF)的地震倒塌。向量值IM的第一部分是Sa(T-1),第二部分是不可缩放的。执行增量动态分析(IDA)以计算具有VD的钢SMRF的地震倒塌能力Sa(col)值。然后,研究了IM用于预测结构的倒塌能力的效率和充分性,并提出了(Sa(T-1),SaRatio(MD))作为包含频谱形状的高级矢量值IM和地面运动(GM)持续时间效果。结果表明(Sa(T-1),SaRatio(M-D))具有较高的效率和充分性,可以可靠地预测带有VD的SMRF钢的倒塌能力。

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