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Nonlinear instability analysis of long-span roofing structures: The case-study of Porta Susa railway-station

机译:大跨度屋盖结构的非线性失稳分析:Porta Susa火车站的案例研究

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Instability problems are going to be more and more important for long-span structures, especially for those where structural shape and loading capacity are strictly correlated. In view of this, a complete buckling analysis seems to be essential for the correct prediction of structural behaviour. At the same time, recent disasters, occurred in the last few years, such as the collapse of the new pavilion of Charles de Gaulle Airport in Paris (2006), have brought the instability of shallow long-span roofs at the cutting edge of structural engineering research. In this paper, different studies devoted to the stability of the large span roof of the new railway station of Porta Susa in Torino (Italy) are proposed. In particular, 2D models were realized in order to evaluate in-plane linear and nonlinear instabilities for different loading and restraining conditions of the steel arches constituting the bearing framework of the roof. These arches have been subdivided into different groups according to the geometric characteristics. It has been found that nonlinear analyses are able to give not only an interpretation of the post-buckling behaviour, but also a more correct evaluation of the safety factor for this kind of structures. Moreover, a parametric evaluation, taking into account different cross sections, is presented. The results reveal that much slender arches would offer the same safety factor as the existing ones due to the activation of a different resisting mechanism, although with an evident reduction in the employed material. Finally, the outcomes of this case-study could be generalized in order to investigate the behaviour of other structural typologies and to suggest alternative design approaches. (C) 2015 Elsevier Ltd. All rights reserved.
机译:对于大跨度结构,尤其是那些结构形状和承载能力严格相关的结构,不稳定问题将变得越来越重要。有鉴于此,完整的屈曲分析对于正确预测结构行为似乎至关重要。同时,最近几年发生的灾难,例如巴黎的戴高乐机场新馆倒塌(2006年),在结构的最前沿带来了浅大跨度屋顶的不稳定性工程研究。在本文中,针对都灵(意大利)的苏萨门新火车站的大跨度屋顶的稳定性提出了不同的研究。特别地,为了评估构成屋顶支承框架的钢拱的不同载荷和约束条件的平面内线性和非线性不稳定性,实现了二维模型。这些拱门已根据几何特征细分为不同的组。已经发现,非线性分析不仅可以解释屈曲后的行为,而且可以对这种结构的安全系数进行更正确的评估。此外,提出了考虑不同横截面的参数评估。结果表明,尽管采用的材料明显减少,但由于激活了不同的抵抗机制,许多细长的拱门将提供与现有拱门相同的安全系数。最后,可以对本案例研究的结果进行概括,以调查其他结构类型的行为并提出替代设计方法。 (C)2015 Elsevier Ltd.保留所有权利。

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