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LIMITATIONS OF CURRENT DESIGN PROCEDURES FOR STEEL MEMBERS IN SPACE FRAMES

机译:空间框架中钢结构设计程序的限制

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The use of more advanced methods of analysis to design steel frames may lead to substantial material savings, in addition to simplicity in the design procedures. However, these benefits do not yet appear to be a powerful incentive for many structural engineers to abandon the familiar linear elastic analysis (LEA) based design procedures, even when dealing with steel structures that are not regular rectangular frames. This paper uses a heuristic example to demonstrate the serious limitations of the LEA based design procedures, whether alignment charts or system buckling analysis is used to determine the effective lengths of the compression members. It is shown that LEA based design procedures may lead to unsafe structures due to their inability to account for bending moment amplification in the rigidly connected tension members of a space frame. Furthermore, there is no allowance for the amplification of axial forces due to changes in the structure geometry, which is significant for the space frame example. Confidence in the system buckling analysis method for determining the effective lengths of compression members, based on linear buckling analysis, is shown to be potentially dangerous for certain types of frames. For the space frame example, the elastic buckling load is overestimated by over 200%. The conservatism inherent in the member capacity check equations specified in steel design standards is also illustrated.
机译:除了在设计程序中的简单性之外,使用更先进的分析方法对设计钢框架的设计可能会产生大量的材料。然而,即使在处理不是规则矩形框架的钢结构时,许多结构工程师尚未对许多结构工程师放弃基于线性弹性分析(LEA)的设计程序的强大激励。本文采用启发式示例来展示基于LEA的设计程序的严重局限性,是否用于确定压缩构件的有效长度的对准图表或系统屈曲分析。结果表明,由于它们无法解释空间框架的刚性连接的张力构件中的弯矩放大,因此Lea基于Lea的设计程序可能导致不安全的结构。此外,由于结构几何形状的变化,没有允许扩增轴向力,这对于空间框架示例是重要的。基于线性屈曲分析,在确定有效长度的系统屈曲分析方法的置信度被认为对某些类型的帧来说是可能危害的。对于空间框架示例,弹性屈曲负荷升高超过200%。还说明了钢设计标准中规定的成员容量检查方程所固有的保守主义。

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