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首页> 外文期刊>Journal of structural engineering >Performance-Based Seismic Design of Wood Frame Buildings Using a Probabilistic System Identification Concept
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Performance-Based Seismic Design of Wood Frame Buildings Using a Probabilistic System Identification Concept

机译:基于概率系统识别概念的木结构房屋基于性能的抗震设计

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摘要

Performance-based seismic design (PBSD) of wood frame structures has been only preliminarily investigated by a handful of researchers around the world and is currently under development in the United States as well as other countries worldwide. This paper presents the basic concept of applying system identification logic as one alternative for PBSD of wood frame structures. In PBSD of wood frame structures, one prescribes combinations of hazard level and corresponding performance, and "designs" the system such that these performance metrics are met. For wood frame buildings this procedure fits the definition of a system identification problem, i.e., the input and output are known and the nonlinear system between them is sought. In most cases the shearwall locations, i.e., geometry, are known, and only the wall design is sought. In this paper, the concept is presented and a procedure to apply it within a PBSD framework is proposed. The validity of the procedure is confirmed through two illustrative examples, namely the design for a two-story wood shearwall and a two-story wood frame building. An existing ten-parameter hysteresis model commonly used for seismic analysis of wood frame structures was used in both examples to represent the nonlinear system to be identified. The "design" is then checked by applying a suite of ordinary ground motion records and comparing the multirecord incremental dynamic analysis of the peak deformation response to the target (performance) curve. The approach was found to work well for the example structures and shows promise for extension to more complicated structures and performance measures.
机译:木框架结构的基于性能的抗震设计(PBSD)仅由世界各地的少数研究人员进行了初步研究,目前在美国以及世界其他国家/地区正在开发中。本文提出了将系统识别逻辑作为木结构PBSD的一种替代方法的基本概念。在木框架结构的PBSD中,人们规定了危害等级和相应性能的组合,并“设计”系统以符合这些性能指标。对于木结构建筑,此过程适合系统识别问题的定义,即,已知输入和输出并寻求它们之间的非线性系统。在大多数情况下,剪力墙的位置(即几何形状)是已知的,并且仅寻求墙的设计。在本文中,提出了该概念,并提出了在PBSD框架内应用该概念的过程。该程序的有效性通过两个示例性实例得到证实,即两层木剪力墙和两层木构架的设计。在两个示例中均使用了现有的通常用于木框架结构地震分析的十参数磁滞模型,以表示要识别的非线性系统。然后,通过应用一组普通的地面运动记录并比较峰变形响应对目标(性能)曲线的多记录增量动态分析,来检查“设计”。发现该方法对于示例结构很好,并且显示了扩展到更复杂的结构和性能度量的希望。

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