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Coupled vibration of a partially fluid-filled cylindrical container with a cylindrical internal body

机译:部分填充液体的圆柱形容器与圆柱形内部主体的耦合振动

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摘要

In the present paper a method is proposed to investigate the effects of a rigid internal body on the coupled vibration of a partially fluid-filled cylindrical container. The internal body is a thin-walled and open-ended cylindrical shell. The internal body is concentrically and partially submerged inside a container. The radial and axial distances between the internal body and the container are filled with fluid. Along the contact surface between the container and the fluid, the compatibility requirement for the fluid-structure interactions is applied and the Rayleigh-Ritz method is used to calculate the natural frequencies and modes of a partially fluid-filled cylindrical container. The fluid domain is continuous, simply connected, and non-convex. The fluid is assumed to be incompressible and inviscid. The velocity potential for fluid motion is formulated in terms of eigenfunction expansions for two distinct fluid regions. The resulting equations are solved by using the Galerkin method. The results from the proposed method are in good agreement with experimental and numerical solutions available in the literature for the partially water-filled cylindrical container without internal body. A finite element analysis is also used to check the validity of the present method for the partially water-filled cylindrical container with internal body. The effects of the fluid level, internal body radius, and internal body length on the natural frequencies of the coupled system are also investigated.
机译:在本文中,提出了一种方法来研究刚性内部主体对部分填充液体的圆柱形容器的耦合振动的影响。内部主体是薄壁且开口端的圆柱壳。内部主体同心且部分浸没在容器内。内部主体与容器之间的径向和轴向距离充满了流体。沿着容器和流体之间的接触面,应用了流体-结构相互作用的相容性要求,并使用Rayleigh-Ritz方法来计算部分填充流体的圆柱形容器的固有频率和模式。流体域是连续的,简单连接的并且是非凸的。假定流体不可压缩且不粘稠。流体运动的速度势是根据两个不同流体区域的本征函数展开来表示的。通过使用Galerkin方法求解所得方程。所提出的方法的结果与文献中针对没有内部主体的部分注水的圆柱形容器的实验和数值解非常吻合。还使用有限元分析来检查本方法对于带有内部主体的部分注水的圆柱形容器的有效性。还研究了液位,内部半径和内部长度对耦合系统固有频率的影响。

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