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Seismie Design of Steel Moment-Resisting Frame Structures Using Multiobjective Optimization

机译:基于多目标优化的抗弯框架结构抗震设计

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摘要

Design of seismic-resistant civil structural systems necessitates a balanced minimization of two general conflicting objective functions: the short-term construction investment and the long-term seismic risk. Many of the existing seismic design optimization procedures use single objectives of either the traditional minimum material usage (weight or cost) or the recent minimum expected life-cycle cost, while imposing constraints from relevant code specifications as well as additional seismic performance requirements. The resulting single optimized structural design may not always perform satisfactorily in terms of other important but competing merit objectives; the designer's individual risk-taking preference is not explicitly integrated into the design process. This paper presents a practical and general framework for design optimization of code-compliant seismic-resistant structures. Multiple objective functions, which reflect material usage, initial construction expenses, degree of design complexity, seismic structural performance, and lifetime seismic damage cost, respectively, are treated simultaneously as well as separately in the optimization process. Member-sizing problems of unbraced, regular planar, steel moment-resisting frames are selected as application examples. The resulting wide spread of optimized trade-off design alternatives enables structural engineers to actively select a cost-effective design solution that compromises conflicting merit objectives in a preferred manner.
机译:抗震土木结构系统的设计需要均衡地最小化两个相互矛盾的目标功能:短期建设投资和长期地震风险。许多现有的抗震设计优化程序都使用了传统的最小材料使用(重量或成本)或最近的最小预期生命周期成本的单一目标,同时施加了相关规范的约束以及附加的抗震性能要求。就其他重要但相互竞争的优点目标而言,所得到的单一优化结构设计可能并不总是令人满意。设计者的个人冒险偏好未明确集成到设计过程中。本文为规范抗震结构的设计优化提供了一个实用的通用框架。在优化过程中,同时处理了多个目标函数,分别反映了材料使用,初始建设费用,设计复杂程度,抗震结构性能和终生地震破坏成本。选择无支撑,规则的平面钢制抗弯框架的构件尺寸问题作为应用示例。优化折衷设计替代方案的广泛应用,使结构工程师能够积极选择一种经济有效的设计解决方案,以一种首选的方式折衷相冲突的绩效目标。

著录项

  • 来源
    《Earthquake spectra》 |2005年第2期|p.389-414|共26页
  • 作者

    Min Liu;

  • 作者单位

    Department of Civil, Environmental, and Architectural Engineering, University of Colorado at Boulder, 428 UCB, 1111 Engineering Drive, Boulder, CO 80309-0428;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;地震学;
  • 关键词

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