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首页> 外文期刊>Thin-Walled Structures >Buckling Analysis of a Cooling Tower Shell with Measured and Theoretically-Modelled Imperfections
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Buckling Analysis of a Cooling Tower Shell with Measured and Theoretically-Modelled Imperfections

机译:具有测量和理论模型缺陷的冷却塔壳体的屈曲分析

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摘要

Geometrical imperfections were measured using photogrammetric techniques on an existing reinforced concrete cooling tower shell. The imperfections, related to the radii of such a real shell, were used as input data to create a real shape of the cooling tower. Numerical analysis was carried out for three models: (P) perfect shell of revolution, (M) shell with measured imperfections, (T) shell with a theoretical imperfection corresponding to the primary buckling mode under dead load. The buckling analysis was related to the linearized eigenvalue problem of elastic shells. The shell midsurface was approximated by eight-node quadrilateral isoparametric finite elements. Computations were carried out using the ANKA computer code. Critical values of the load parameter enable confirmation of a partial correlation between existing imperfections and buckling modes under dead load. The most disadvantageous direction of the wind load application on the real shell was found, in order to evaluate the decrease in the load-carrying capacity of the cooling tower shell against buckling. Theoretically modelled imperfections give rather unrealistic values of buckling loads of the real shell.
机译:在现有的钢筋混凝土冷却塔壳体上使用摄影测量技术测量了几何缺陷。与这种真实壳体的半径有关的缺陷被用作输入数据以创建冷却塔的真实形状。对三个模型进行了数值分析:(P)理想旋转壳,(M)具有测量缺陷的壳,(T)具有理论缺陷的壳,其对应于静载荷下的主要屈曲模式。屈曲分析与弹性壳的线性化特征值问题有关。壳中表面由八节点四边形等参有限元近似。使用ANKA计算机代码进行计算。载荷参数的临界值使得能够确定静载荷下现有缺陷和屈曲模式之间的部分相关性。为了评估冷却塔壳体抵抗屈曲的承载能力下降,找到了在实际壳体上施加风荷载的最不利方向。从理论上建模的缺陷给出了真实壳体的屈曲载荷的相当不现实的值。

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