Modal Analysis of Liquids in Rectangular Container

C. Pandi, K. Srinivas
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Abstract

The disturbance on the free surface of the liquid when the liquid-filled tanks are excited is called sloshing. It is important to know the fundamental natural frequencies of the system to analyze how a system vibrates under external excitations. The aim of the present paper is to perform find the natural sloshing frequencies of liquid filled containers experimentally and numerically. A swine sweep test is carried out on a shake table to find the slosh frequencies experimentally. Finite element technique is employed to solve slosh frequencies numerically. The governing equation of motion of the fluid is considered homogeneous, isotropic, inviscid and incompressible. The governing equations are expressed in terms of the pressure variable alone. The numerical natural frequencies of sloshing are calculated using 3D finite element model. The liquid domain is discretized using eight-node isoperimetric brick elements. Sloshing frequencies obtained from experiment and numerical model are in excellent agreement. The sloshing frequencies obtained are also compared with analytical solution available in literature and found to be in good agreement.
矩形容器内液体的模态分析
当充液罐受到激励时,液体自由表面上的扰动称为晃动。了解系统的基本固有频率对于分析系统在外部激励下的振动是很重要的。本文的目的是通过实验和数值方法求得充液容器的固有晃动频率。在振动台上进行了猪扫试验,以获得晃动频率。采用有限元技术对晃动频率进行数值求解。流体的运动控制方程被认为是均匀的、各向同性的、无粘的和不可压缩的。控制方程只用压力变量来表示。采用三维有限元模型计算了晃动的数值固有频率。采用八节点等距砖单元对液域进行离散化。实验结果与数值模型吻合较好。得到的晃动频率也与文献中可用的解析解进行了比较,发现两者吻合得很好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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