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Shape sensitivities in the reliability analysis of nonlinear frame structures

机译:非线性框架结构可靠性分析中的形状敏感性

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摘要

A unified and comprehensive treatment of shape sensitivity that includes variations in the nodal coordinates, member cross-section properties, and global shape parameters of inelastic frame structures is presented. A novelty is the consideration of geometric uncertainty in both the displacement- and force-based finite element formulations of nonlinear beam-column behavior. The shape sensitivity equations enable a comprehensive investigation of the relative influence of uncertain geometrical imperfections on structural reliability assessments. For this purpose, finite element reliability analyses are employed with sophisticated structural models, from which importance measures are available. The unified approach presented herein is based on the direct differentiation method and includes variations in the equilibrium and compatibility relationships of frame finite elements, as well as the member cross-section geometry, in order to obtain complete shape sensitivity equations. The analytical shape sensitivity equations are implemented in the OpenSees software framework. Numerical examples involving a steel structure and a reinforced concrete structure confirm that geometrical imperfections may have a significant impact on structural reliability assessments.
机译:提出了一种形状敏感性的统一和综合处理方法,包括节点坐标,构件横截面特性和非弹性框架结构整体形状参数的变化。一种新颖性是在非线性梁柱行为的基于位移和基于力的有限元公式中考虑几何不确定性。形状敏感度方程可以全面研究不确定的几何缺陷对结构可靠性评估的相对影响。为此,对复杂的结构模型进行了有限元可靠性分析,从中可以找到重要的措施。本文介绍的统一方法基于直接微分方法,包括框架有限元的平衡和兼容性关系以及构件横截面几何形状的变化,以便获得完整的形状敏感性方程。解析形状敏感性方程在OpenSees软件框架中实现。涉及钢结构和钢筋混凝土结构的数值示例证实,几何缺陷可能会对结构可靠性评估产生重大影响。

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