标题: | 钢结构同心斜撑构架简化模型之静动态分析 Static and Dynamic Analysis of Simplified Models for Concentrically Braced Steel Frame |
作者: | 庄咏翔 Chuang, Yung-Hsiang 陈垂欣 Chen, Chui-Hsin 土木工程系所 |
关键字: | 钢结构同心斜撑构架;简化模型;非线性静态侧推分析;非线性动力分析;PISA3D;Fishbone;Brace-Column;concentrically braced frames;simplified model;nonlinear static pushover analysis;nonlinear dynamic analysis;PISA3D;Fishbone;Brace-Column |
公开日期: | 2014 |
摘要: | 在地震发生频繁的台湾,结构行为数值模拟近年来已被广为应用于钢结构建筑的耐震设计上,随着结构复杂度的增加及结构行为模拟精确度的要求,简化模型的使用需求日增。本研究使用国家地震中心所开发的非线性分析软体Platform of Inelastic Structural Analysis for 3D Systems(PISA3D)来建立三层楼与六层楼典型钢结构同心斜撑构架之简化模型,以Fishbone及本研究提出的Brace-Column作为简化方式,透过非线性静态侧推分析(pushover)以及非线性动力分析结果,比较不同模型之楼层位移、加速度、迟滞消能行为等参数,探讨简化模型的精确度。 分析结果显示,简化模型与原结构之结构周期相似度高而侧推分析之强度与劲度差异则低于10%,而楼层位移除了最大考量地震以外,差异值都不超过10%;不同模型最大楼层加速度具有合理的精确度,迟滞消能反应则显示Fishbone模型可以准确模拟出完整Frame模型之消能行为。 Numerical analysis has been widely used to design steel structures in seismic areas. As the complexity of structures and the demand of analysis accuracy increase, it is required to develop more efficient numerical models. This study used simplified models for concentrically braced steel frame, namely Fishbone model and Brace-Column model. The analysis program is PISA3D (Platform of Inelastic Structural Analysis for 3D Systems), which is developed by National Center for Research on Earthquake Engineering. According to the results of nonlinear static analysis (pushover) and nonlinear dynamic analysis, we compare the story drift, floor acceleration, and hysteretic responses of different models and investigate their accuracy. The model buildings are typical three- and six-story SCBF. Analysis results show that the structural periods are similar among different models. Also, the results of nonlinear static analysis show that the difference of both strength and stiffness between different models is less than 10%. The results of nonlinear dynamic analysis show that the difference of story drift is less than 10% for service-level and design-level earthquakes; the floor accelerations of different models are similar under most circumstances; the hysteretic responses suggest that Fishbone models is the most accurate to capture the behavior of complete Frame model for SCBF structures. |
URI: | http://140.113.39.130/cdrfb3/record/nctu/#GT070051205 http://hdl.handle.net/11536/76153 |
显示于类别: | Thesis |
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