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Finite element modelling of a silo based on experimental modal analysis

机译:基于实验模态分析的筒仓有限元建模

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摘要

Circular cylindrical shell structures are sensitive to wind induced ovalling oscillation, which is an aeroelastic phenomenon. This paper presents a finite element model of a silo that is validated by means of experimental results obtained on a silo on which ovalling has been observed. Results obtained with a three-dimensional finite element model of the silo, including the connection between the silo and the supporting structure, show the best correspondence with measurement results. The boundary condition for the axial displacements strongly affects the eigenfrequencies and the mode shapes. Differences between results obtained with a model that exploits symmetry and a three-dimensional model are explained. The finite strip method allows us to reduce the silo model to two dimensions, so that it can be coupled to a two-dimensional wind flow in future fluid-structure interaction calculations that aim to predict the onset flow velocity.
机译:圆柱壳结构对风引起的椭圆振荡很敏感,这是一种气弹现象。本文介绍了筒仓的有限元模型,该模型通过在已观察到椭圆形的筒仓上获得的实验结果进行了验证。用筒仓的三维有限元模型获得的结果(包括筒仓和支撑结构之间的连接)显示出与测量结果的最佳对应。轴向位移的边界条件强烈影响本征频率和振型。解释了利用对称模型和三维模型获得的结果之间的差异。有限条带法使我们可以将筒仓模型简化为二维模型,以便在未来的流固耦合计算中将其耦合到二维风流中,以预测起始流速。

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