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首页> 外文期刊>Journal of structural engineering >Design-Oriented Model for Capturing the In-Plane Seismic Response of Partition Walls
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Design-Oriented Model for Capturing the In-Plane Seismic Response of Partition Walls

机译:面向设计的捕获隔墙平面地震响应的模型

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摘要

Using data generated from experiments, a numerical model is developed for capturing the in-plane seismic response of full-height cold-formed steel framed partition walls. The behavior of the partition wall is captured using a lumped nonlinear material model localized within a zero-length spring. The lumped material is developed with a pinching material used in a parallel configuration within the Open System for Earthquake Engineering Simulation (OpenSees) modeling platform. A simple, lumped model is utilized to facilitate ease of implementation in beam-column type finite element analyses commonly adopted in design of building structures. Importantly, its characteristics are determined by analyzing a large suite of experimental data on institutional and commercial type metal stud walls. Two error metrics based on calculation of the maximum force and half-cycle hysteretic energy are introduced to assess the model's robustness. The model's predictive capabilities are demonstrated via simulation of individual walls. In particular, for a fully-connected partition wall, a normalized mean model is shown to capture the experimental hysteretic behavior with a high level of accuracy.
机译:利用实验产生的数据,建立了一个数值模型来捕获全高冷弯型钢框架隔墙的面内地震响应。隔墙的行为是使用位于零长度弹簧内的集总非线性材料模型捕获的。集总材料是使用在地震工程仿真开放系统(OpenSees)建模平台的并行配置中使用的收缩材料开发的。利用一个简单的集总模型来简化在建筑结构设计中通常采用的梁柱式有限元分析的实现。重要的是,它的特性是通过分析大量用于机构和商业型金属墙钉的实验数据来确定的。基于最大力和半周期滞回能量的计算,引入了两个误差度量,以评估模型的鲁棒性。该模型的预测能力通过对单个墙的仿真来证明。特别是,对于完全连接的隔墙,显示了归一化均值模型,可以以很高的精度捕获实验滞后行为。

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