SEISMIC ANALYSIS AND DESIGN ASSISTED BY NUMERICAL SIMULATION OF SLENDER STEEL PORTAL FRAME STRUCTURES

A. O. M. Ahmed, N. Barltrop
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Abstract

Lightweight (thin-walled or cold-formed) steel portal frame structure could be a popular and effective alternative to the traditional hot rolled structure and, with care to avoid buckling, could be used in earthquake areas owing to its economy and ease of fabrication and transportation, but no recommendations for seismic design of these structures is provided in the design codes. Accordingly, there is need for a lightweight design that is suitable for earthquake areas, which could be transported using lighter vehicles and erected quickly using smaller plant than is required for conventional hot rolled sections following an earthquake. The present paper shows some stages in the development of an earthquake-resistant frame, designed for by combining numerical finite element investigations with analytical check calculations based on EN 1993-1-3 for cold-formed steel members and EN 1993-1-1 for design of steel structures to estimate the loads on the frame structure within the use of EN 1998-1seismic design requirements. Although the initial buckling modes have been avoided, the frame still needs further modification to improve its ductility. It is planned to use this work to assist with the development of performance-based design recommendations for future structures that cover both thin-walled steel and cold-formed steel portal frame structures.
基于数值模拟的门式细长钢框架结构抗震分析与设计
轻质(薄壁或冷弯)钢门框结构可能是传统热轧结构的一种流行和有效的替代方案,并且由于其经济,易于制造和运输,可以在地震地区使用,以避免屈曲,但设计规范中没有提供这些结构的抗震设计建议。因此,需要一种适合地震地区的轻量化设计,可以使用更轻的车辆运输,并在地震后使用比传统热轧型材所需的更小的工厂快速安装。本文展示了抗震框架发展的一些阶段,通过将数值有限元调查与基于EN 1993-1-3的冷弯型钢构件和EN 1993-1-1的钢结构设计的分析验算相结合,在使用EN 1998-1抗震设计要求的范围内估计框架结构上的载荷。虽然避免了初始屈曲模式,但框架仍需进一步修改以提高其延性。计划利用这项工作来协助开发基于性能的未来结构设计建议,包括薄壁钢和冷弯钢门户框架结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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