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首页> 外文期刊>Journal of structural fire engineering >In-plane stability of shallow concrete arches under fire
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In-plane stability of shallow concrete arches under fire

机译:火灾下浅混凝土拱的面内稳定性

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摘要

Purpose - Concrete arch structures are commonly constructed for various civil engineering applications. Despite their frequent use, there is a lack of research on the response and performance of concrete arches when subjected to fire loading. Hence, this paper aims to investigate the response and in-plane failure modes of shallow circular concrete arches subjected to mechanical and fire loading. Design/methodology/approach - This study is conducted through the development of a three-dimensional finite element (FE) model in ANSYS. The FE model is verified by comparison to a non-discretisation numerical model derived herein and the reduced modulus buckling theory, both used for the non-linear inelastic analysis of shallow concrete arches subjected to uniformly distributed radial loading and uniform temperature field. Both anti-symmetric and symmetric buckling modes are examined, with analysis of the former requiring geometric imperfection obtained by an eigenvalue buckling analysis. Findings - The FE results show that anti-symmetric bifurcation buckling is the dominant failure mode in shallow concrete arches under mechanical and fire loading. Additionally, parametric studies are presented which illustrate the influence of various parameters on fire resistance time. Originality/value - Fire response of concrete arches has not been reported in the open literature. The authors have previously investigated the stability of shallow concrete arches subjected to mechanical and uniform thermal loading. It was found that temperature greatly reduced the buckling loads of concrete arches. However, this study was limited to the simplifying assumptions made which include elastic material behaviour and uniform temperature loading. The present study provides a realistic insight into the fire response and stability of shallow concrete arches. The findings herein may be adopted in the fire design of shallow concrete arches.
机译:目的 - 混凝土拱结构通常为各种土木工程应用构建。尽管他们经常使用,但在经过火灾时,缺乏对混凝土拱的响应和性能的研究。因此,本文旨在研究经受机械和火灾载荷的浅圆形混凝土拱的响应和面内衰竭模式。设计/方法/方法 - 本研究通过开发ANSYS的三维有限元(FE)模型进行。通过与此处得出的非离散数值模型和减少的模量屈曲理论进行验证,用于验证FE模型,两者都用于对经受均匀分布的径向负载和均匀温度场的浅混凝土拱的非线性内弹性分析。检查抗对称和对称屈曲模式,分析前者需要通过特征值屈曲分析获得的几何缺陷。调查结果 - FE结果表明,抗对称分岔屈曲是机械和火灾负荷下浅混凝土拱的主导故障模式。另外,提出了参数研究,其示出了各种参数对耐火时间的影响。公开文学中尚未报告混凝土拱门的原创性/值 - 消防响应。此前提前研究了浅混凝土拱门进行机械和均匀热负荷的稳定性。发现温度大大降低了混凝土拱的屈曲负荷。然而,该研究仅限于简化的假设,包括弹性材料行为和均匀的温度负荷。本研究规定了对浅混凝土拱的火灾响应和稳定性的现实洞察力。本文的发现可以在浅混凝土拱的火灾设计中采用。

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