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A displacement-based seismic design procedure for buildings with fluid viscous dampers

机译:具有流体粘性阻尼器的建筑物基于位移的地震设计程序

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This paper presents a displacement-based seismic design procedure for new structures with fluid viscous dampers and/or for existing structures, where these devices are required as a retrofit measure and damage control. To consider the non-proportional damping produced by these devices in a conventional modal spectral analysis, the effect of the fluid viscous dampers is approximated as the sum of a proportional damping matrix and a complementary matrix which is representative of non-proportional damping matrix. To illustrate the application of this procedure and evaluate the performance of structures designed with the procedure proposed, five regular plane frames: 8, 12, 17, 20 and 25-storey, and an 8-storey building are designed. The seismic demands used for design and validation were the records obtained at the SCT site during the 1985 Michoacan earthquake, and that of the 2017 Morelos - Puebla earthquake obtained at the Culhuacan site, both stations located on soft soil sites. To validate the procedure proposed, the performances and damage distributions used as design targets were compared with the corresponding results from the nonlinear step-by-step analyses of the designed structures subjected to the same seismic demands.
机译:本文提出了一种基于位移的地震设计程序,用于具有流体粘性阻尼器和/或现有结构的新结构,其中这些装置是改装测量和损伤控制所必需的。为了考虑这些装置在传统的模型光谱分析中产生的非比例阻尼,流体粘性阻尼器的效果被近似为比例阻尼矩阵的和互补矩阵,其代表非比例阻尼矩阵。为了说明该程序的应用,并评估使用所提出的程序设计的结构的性能,设计了五个常规平面框架:8,12,17,20和25层,以及8层楼的建筑物。用于设计和验证的地震要求是在1985年迈克克兰州地震期间在SCT网站上获得的记录,以及在Culhuacan站点获得的2017年MoreloS - Puebla地震,这两个站位于软土地站。为了验证所提出的程序,将用作设计目标的性能和损坏分布与来自对相同地震要求进行的设计结构的非线性逐步分析的相应结果进行了比较。

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