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Pushover analysis by one element per member for performance-based seismic design

机译:基于性能的抗震设计,每个成员一个元素进行推覆分析

摘要

Nonlinear static (pushover) analysis is an effective and simple tool for evaluating the seismic response of structures and offers an attractive choice for the performance-based design. As such, it has generally been used in modern design due to its practicality. However, the nonlinear plastic design method consumes extensive computational effort for practical structures under numerous load cases. Thus, an efficient element capturing the nonlinear behavior of a beam-column will be useful. In this paper, the authors propose a practical pushover analysis procedure using a single element per member for seismic design. As an improvement to previous research works, both P and P δ effects as well as initial imperfections in global and member levels are considered. Therefore, the section capacity check without the assumption of effective length is adequate for present design and the conventional individual element design is avoided. The uncertainty of the buckling effects and effective length method can be eliminated and so a more economical design can be achieved. Two benchmark steel frames of three-storey and nine-storey in FEMA 440 were analyzed to illustrate the validity of the proposed method.
机译:非线性静态(推入)分析是评估结构地震响应的有效而简单的工具,为基于性能的设计提供了诱人的选择。这样,由于其实用性,它通常已被用于现代设计中。但是,非线性塑料设计方法在众多载荷情况下为实际结构消耗了大量计算量。因此,捕获梁柱非线性行为的有效元件将是有用的。在本文中,作者提出了一种实用的推覆分析程序,该程序使用每个成员一个元素进行抗震设计。作为对先前研究工作的改进,考虑了P和Pδ效应以及全局和成员级别的初始缺陷。因此,在不假设有效长度的情况下进行截面容量检查对于本设计是足够的,并且避免了常规的单个元件设计。可以消除屈曲效果和有效长度方法的不确定性,从而可以实现更经济的设计。分析了FEMA 440中两层三层和九层的基准钢框架,以说明该方法的有效性。

著录项

  • 作者

    Liu SW; Liu YP; Chan SL;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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