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Second-order analysis for design of glass-supporting and pre-tensioned trusses

机译:玻璃支撑和预应力桁架设计的二阶分析

摘要

Glass wall supporting systems, comprising of pre-tensioned high strength trusses made from alloy steel bars, behave nonlinearly under wind and other loads. For a proper analysis and design, second-order and large deflection analyses are mandatory as the structural response like stress and deflections are highly dependent on the small movements and temperature effects. Also, careful consideration must be given to various effects such as support settlement due to live loads and material creep, temperature change, pre-tension force and wind pressure. It is not uncommon to see many glass wall systems fail in a simulated wind load test under the simulated design wind speed. This paper presents a rigorous analysis and design of this type of structural systems used in two projects in Hong Kong. The key message is the need to use "section strength check" in place of the member design adopted in the conventional effective length method for design of practical structures behaving nonlinearly since the prescriptive buckling check formulae become inaccurate or even invalid. The use of stability function allowing for initial imperfections in place of cubic Hermite element is proposed here because of the high degree of nonlinearity.
机译:玻璃墙支撑系统包括由合金钢制成的预张紧的高强度桁架,在风和其他载荷下表现出非线性。为了进行适当的分析和设计,必须进行二阶和大挠度分析,因为应力和挠度等结构响应高度依赖于较小的运动和温度效应。另外,必须仔细考虑各种影响,例如由于活载和材料蠕变引起的支撑沉降,温度变化,预紧力和风压。在模拟设计风速下,许多玻璃墙系统在模拟风荷载测试中失败的情况并不少见。本文对在香港两个项目中使用的这种结构系统进行了严格的分析和设计。关键信息是,由于规定的屈曲检查公式变得不准确甚至无效,因此需要使用“截面强度检查”来代替用于有效构造非线性结构的常规有效长度方法中采用的构件设计。由于高度的非线性,这里建议使用允许初始缺陷的稳定性函数代替立方Hermite元素。

著录项

  • 作者

    Liu YP; Chan SL;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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