李刚

个人信息Personal Information

教授

博士生导师

硕士生导师

任职 : 工业装备结构分析优化与CAE软件全国重点实验室主任、结构优化理论与应用国际联合研究中心主任

性别:男

毕业院校:大连理工大学

学位:博士

所在单位:力学与航空航天学院

学科:工程力学. 计算力学. 结构工程. 车辆工程

办公地点:力学楼302

联系方式:0411-84707267 ligang@dlut.edu.cn

电子邮箱:ligang@dlut.edu.cn

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Integrated Reliability-Based Seismic Drift Design Optimization of Base-Isolated Concrete Buildings

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论文类型:期刊论文

发表时间:2010-10-01

发表刊物:JOURNAL OF STRUCTURAL ENGINEERING

收录刊物:SCIE、Scopus

卷号:136

期号:10

页面范围:1282-1295

ISSN号:0733-9445

关键字:Response spectrum analysis; Reliability; Structural optimization; Optimality criteria method; Principle of virtual work; Drift design; Base isolation; Earthquakes; Concrete; FORM method

摘要:This paper presents an effective numerical reliability-based optimization technique for the design of base-isolated concrete building structures under spectrum loading. Attempts have been made to automate the integrated spectrum analysis, reliability analysis, and design optimization procedure and to minimize the total cost of the base-isolated building subjected to multiple design performance criteria in terms of the story drift of the superstructure and lateral displacement of the isolation system or corresponding reliability constraints. In the optimal design formulation, the cost of the superstructure can be expressed in terms of concrete member sizes while assuming all these members to be linear elastic under a specified design earthquake. However, the base isolation is assumed to behave nonlinearly and its cost can be related to the effective horizontal stiffness of each isolator. Based on the principle of virtual work, the drift responses and corresponding reliability indexes can be explicitly formulated and the integrated optimization problem can be solved by an optimality criteria method. The technique is capable of achieving the optimal balance between the costs of the superstructure and isolation systems while the seismic drift performance or corresponding reliability of a building can be simultaneously considered. An illustrative example shows that conventional deterministic design optimization cannot ensure designs with satisfactory reliability levels, whereas the reliability-based design optimization can achieve the objective when uncertainties are considered. It is believed that such an optimization technique provides an effective tool for seismic design of building structures.