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Codal Requirements Using Capacity Design Philosophy, and Their Applications in the Design of Steel Structures in Seismic Zones

机译:使用容量设计理念的对结石的要求及其在地震带钢结构设计中的应用

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The use of steel structures in the developing countries is limited in spite of its better performance in the case of seismic events due to its high ductility. Although steel structures behave well under seismic excitation, nevertheless the use of structural steel is limiting these days. This paper aims to address various parameters related to the capacity design approach involved in the seismic design of conventional steel structures. Few cases of the early steel structures construction such as bridges in Pakistan are briefly described. Philosophies based on the capacity design approach and the importance of conventional steel lateral load resisting systems with their global mechanisms are provided. The design procedures of Eurocode 8 for Steel Moment resisting frames, Concentric cross braced frames and Eccentric braced frames are given and illustrated. It is believed that the paper will contribute and will be helpful for the designers, researchers and academicians involve in the study of lateral load resisting systems for incorporating in the design process. Since synopsis tables are provided, therefore this will allow a clear understanding of the capacity design approach for different lateral load resisting systems.
机译:尽管钢结构在延展性方面具有较高的抗震性能,但在发展中国家使用钢结构却受到了限制。尽管钢结构在地震激励下表现良好,但近来钢结构的使用受到限制。本文旨在解决与常规钢结构抗震设计中涉及的能力设计方法有关的各种参数。简要描述了早期钢结构建筑的很少案例,例如巴基斯坦的桥梁。提供了基于容量设计方法的原理,以及基于常规钢侧向抗力系统的重要性及其整体机制。给出并举例说明了Eurocode 8的钢制抗弯框架,同心交叉支撑框架和偏心支撑框架的设计程序。相信该论文将为参与设计过程中的侧向抗力系统研究的设计人员,研究人员和院士做出贡献,并将有所帮助。由于提供了概要表,因此,这将使您可以清楚地了解针对不同侧向抗力系统的容量设计方法。

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