利用三维壳体建模设计和分析曲线钢桥

ce/papers Pub Date : 2024-09-11 DOI:10.1002/cepa.3090
Paul Biju-Duval
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引用次数: 0

摘要

钢桥设计人员和架设人员主要依靠近似方法,如一维线梁分析和二维网格分析。对于弯曲或倾斜的桥梁,这可能会错误地显示结构的真实行为。三维壳体建模等精细化分析方法旨在为桥梁工程实践带来重大变革。通过使行业摆脱简单化的设计假设,精细化分析方法可得出更准确、更保守的结果,进而带来真正的好处,如提高结构安全性和经济性。本文介绍了几个关于曲线板梁桥和管梁桥的案例研究,涵盖了桥梁的整个生命周期,从钢结构的安装和混凝土桥面的浇筑,到使用影响面和荷载分级进行活载分析。这些案例研究将使用 mBrace3D 进行建模,这是一款专门用于曲线钢桥的有限元分析软件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design and Analysis of Curved Steel Bridges Using 3D Shell Modelling

Steel bridge designers and erectors primarily rely on approximate methods, such as 1D line girder analyses and 2D grid analyses. For curved or skewed bridges, this can give erroneous indications of the structure's true behaviour. Refined methods of analysis, such as 3D shell modelling, aim to bring a significant change in the practice of bridge engineering. By moving the industry away from simplistic design assumptions, refined analysis methods lead to more accurate, less conservative results, which in turn brings true benefits such as improved structural safety and increased economy. In this paper, several case studies on curved plate girder and tub girder bridges are presented, which cover the full bridge life cycle, from erection of the steel structure and placement of the concrete deck, down to live load analyses using influence surfaces and load rating. The case studies will be modelled with mBrace3D, a dedicated FEA software for curved steel bridges.

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