Simulation and Semi-Analytical Approach on Sloshing Mitigation

Narveen Kumar, N. Choudhary
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引用次数: 2

Abstract

Free vibrations of liquid in the annular region of a rigid circular cylindrical container with a rigid baffle on the free surface are considered. The liquid inside the container is considered; ideal and incompressible, and the fluid motion is irrotational. In the above-considered geometry, along with assumptions made, the velocity potential is introduced, which satisfies Laplace’s equation inside the liquid domain. The boundary value problem (BVP) is formulated using the linear water wave theory. The analytical solution of BVP is obtained in terms of velocity potential with unknown frequency. The velocity potential is used in free surface conditions, which results in a system of homogeneous algebraic equations. The necessary condition for a non-trivial solution of this homogenous system is used to compute the frequencies. Mode shapes of the container in the presence of a rigid baffle are reported using ANSYS software.
晃动减缓的模拟与半解析方法
研究了液体在具有刚性挡板的刚性圆柱容器的环形区域内的自由振动问题。考虑容器内的液体;理想和不可压缩,流体运动是无旋的。在上述考虑的几何中,随着假设的提出,引入了速度势,它在液域中满足拉普拉斯方程。利用线性水波理论建立了边值问题。得到了未知频率下速度势的解析解。在自由表面条件下使用速度势,得到齐次代数方程组。利用齐次系统非平凡解的必要条件计算了频率。利用ANSYS软件对有刚性隔板的容器进行了模态振型分析。
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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