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首页> 外文期刊>Journal of structural engineering >Probabilistic Performance-Based Optimal Design of Steel Moment-Resisting Frames. Ⅱ: Applications
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Probabilistic Performance-Based Optimal Design of Steel Moment-Resisting Frames. Ⅱ: Applications

机译:钢制抗弯框架基于概率性能的优化设计。二:应用

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摘要

Design codes are migrating from prescriptive procedures intended to preserve life safety to reliability-based design. All stakeholders are given the opportunity to speak the common language of risk and structural designs can be developed to not only reliably preserve life safety after rare ground motions, but minimize damage after more frequent ground motions (minimize life-cycle costs). A companion paper presents a methodology for using an evolutionary (genetic) algorithm with radial fitness and balanced fitness functions to generate solutions to optimal design problems formulated within a probabilistic performance-based design framework. The present paper outlines application of the automated algorithm to design steel frames with fully restrained and a variety of partially restrained connections. Comparison of optimal designs resulting from application of the algorithm proposed with those found in the literature is made. Detailed discussion of algorithm performance and response of the resulting optimized designs during pushover and time-history analysis is provided.
机译:设计规范已从旨在维护生命安全的规范性程序过渡到基于可靠性的设计。所有利益相关者都有机会讲风险的通用语言,并且可以开发结构设计,不仅可以可靠地保护罕见的地震动后的生命安全,而且可以将频繁地震动后的破坏降至最低(以最小化生命周期成本)。随附的论文提出了一种使用具有径向适应度和平衡适应度函数的进化(遗传)算法来生成针对基于概率性能的设计框架内最优设计问题的解决方案的方法。本文概述了自动算法在设计具有完全约束和多种部分约束连接的钢框架中的应用。比较了所提出算法的应用和文献中发现的最佳设计。提供了在推入和时间历史分析过程中算法性能和所得优化设计响应的详细讨论。

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