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Application Of Genetic Algorithm To Optimization Of Buckling Restrained Braces For Seismic Upgrading Of Existing Structures

机译:遗传算法在既有结构抗震加固屈曲约束支撑优化中的应用

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摘要

A systematic methodology is proposed for determining the optimal cross-sectional areas of buckling restrained braces used for the seismic upgrading of structures against severe earthquakes. Single-objective and multi-objective optimization problems are formulated. The objective for the former is cost and those for the latter are cost and damage. The constraint is the minimum structural performance required. A genetic algorithm is employed to solve both types of problem. Performance is estimated by conducting nonlinear dynamic analysis. A preliminary procedure based on static analysis is adopted to improve the search efficiency. Both approaches are applied to the strengthening of a multi-storey frame.
机译:提出了一种系统方法,用于确定用于抗震的结构抗震升级的屈曲约束支撑的最佳横截面积。提出了单目标和多目标优化问题。前者的目标是成本,而后者的目标是成本和损害。约束是所需的最低结构性能。遗传算法用于解决两种类型的问题。通过进行非线性动力学分析来评估性能。采用基于静态分析的初步程序来提高搜索效率。两种方法都适用于加强多层框架。

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