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首页> 外文期刊>International Journal of Reliability and Safety >Performance-based earthquake engineering using structural optimisation tools
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Performance-based earthquake engineering using structural optimisation tools

机译:使用结构优化工具的基于性能的地震工程

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摘要

A Performance-Based Design (PBD) procedure for steel structures using structural optimisation is presented. The structural performance is evaluated by means of the reliability demand and resistance methodology of US FEMA-350 guidelines where the uncertainties and randomness in capacity and seismic demand are taken into account in a consistent manner. Both non-linear static and non-linear dynamic analysis procedures are used to obtain the response at two hazard levels. The design procedure is performed in a structural optimisation environment, where the Evolution Strategies (ES) algorithm is implemented for the solution of the optimisation problem. To handle the excessive computational cost, the inelastic time history analyses are performed in a parallel computing environment. The objective of this study is to obtain the design with the least material weight, and thus with less cost, that is able to respond with the desired confidence for each performance level following the specifications of FEMA-350.
机译:介绍了使用结构优化的钢结构基于性能的设计(PBD)程序。结构性能通过美国FEMA-350指南的可靠性需求和抗力方法进行评估,其中以一致的方式考虑了容量和地震需求的不确定性和随机性。非线性静态和非线性动态分析程序均用于获得两个危险等级的响应。设计过程是在结构优化环境中执行的,在该环境中实施了进化策略(ES)算法以解决优化问题。为了处理过多的计算成本,在并行计算环境中执行非弹性时间历史分析。这项研究的目的是获得具有最小材料重量并因此成本更低的设计,从而能够按照FEMA-350的规范对每个性能水平做出期望的置信度。

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