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Practical second-order inelastic analysis for three-dimensional steel frames subjected to distributed load

机译:三维钢框架承受分布载荷的实用二阶非弹性分析

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A practical second-order inelastic analysis of three-dimensional steel frames subjected to distributed load is developed. This analysis realistically assesses both strength and behavior of a structural system and its component members in a direct manner. To capture second-order effects associated with P- δ and P- Δ, stability functions are used to minimize modeling and solution time. The Column Research Council (CRC) tangent modulus concept is used to account for gradual yielding due to residual stresses. A softening plastic hinge model is used to represent the degradation from elastic to zero stiffness associated with development of a hinge. In proposed analysis, a member has two elements and three nodal points. A plastic hinge location can be captured in analysis as the internal nodal point traces the maximum moment location at each load step. Maximum moments and load-displacements predicted by the proposed analysis compare well with those given by other approaches.
机译:建立了实用的三维钢框架二阶非弹性分析方法。该分析以直接的方式现实地评估了结构系统及其组成成员的强度和行为。为了捕获与P-δ和P-Δ相关的二阶效应,使用稳定性函数来最小化建模和求解时间。列研究理事会(CRC)切线模量概念用于说明由于残余应力而导致的逐渐屈服。使用软化塑料铰链模型来表示与铰链发展相关的从弹性到零刚度的退化。在提议的分析中,成员具有两个元素和三个节点。可以在分析中捕获塑料铰链位置,因为内部节点跟踪每个载荷步的最大力矩位置。所提出的分析所预测的最大力矩和载荷-位移与其他方法所给出的比较。

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