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Ambient vibration test and finite element modeling of tall liquid storage tanks

机译:高层储液罐的环境振动测试和有限元建模

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摘要

This paper addresses the experimental and numerical investigations of the dynamic parameters, natural frequencies and mode shapes, of fixed roof, ground supported, steel storage tanks. Three tall liquid storage tanks with aspect ratios greater than unity are considered. The considered tanks have similar height of 12.190 m and different radius of 6.095, 8.00, and 9.144 m. The effect of the aspect ratio, along with the liquid level on dynamic parameters is discussed. Finite element models of tanks are constructed using the finite element package ANSYS. The fluid-structure interaction is governed in the models. Yet, before using numerical techniques for analyzing the tank-liquid systems, they should be validated by experimental results. For this purpose, a series of ambient vibration tests are carried out to determine the natural frequencies and, if possible, the modes of the vibration. Comparison between numerical and experimental values shows good agreement. The new feature considered in the paper is the influence of roof on the natural frequencies and the modes of vibration. It is found that the influence of roof on the natural frequency of vibration of the considered tanks is negligible, while it does restrain the tank top against radial deformations and has significant effect on the mode shapes of tank.
机译:本文讨论了固定顶棚,地面支撑,钢制储罐的动态参数,固有频率和振型的实验和数值研究。考虑三个纵横比大于1的高液体储罐。所考虑的储罐具有相似的高度12.190 m,不同的半径分别为6.095、8.00和9.144 m。讨论了纵横比以及液位对动态参数的影响。储罐的有限元模型是使用有限元软件包ANSYS构建的。在模型中控制了流固耦合。但是,在使用数值技术分析罐-液系统之前,应先通过实验结果对其进行验证。为此,进行了一系列的环境振动测试,以确定固有频率以及振动模式(如果可能)。数值与实验值的比较显示出很好的一致性。本文考虑的新特征是屋顶对固有频率和振动模式的影响。发现顶板对所考虑的储罐的固有振动频率的影响可以忽略不计,尽管它确实限制了储罐顶部不受径向变形的影响,并且对储罐的振型具有显着影响。

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