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Coupled vibration of partially fluid-filled cylindrical shells with ring stiffeners

机译:部分填充液体的圆柱壳与环形加劲肋的耦合振动

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A theoretical method is developed to investigate the coupled vibration characteristics of the ring-stiffened cylindrical shells partially filled with an inviscid, incompressible and irrotational fluid having a free surface. As the effect of free surface waves is taken into account in the analysis, the bulging and sloshing modes are studied. The Rayleigh-Ritz method is used to derive the frequency equation of the ring-stiffened and partially fluid-filled shells based on Love's thin shell theory. The solution for the velocity potential of fluid movement is assumed as a sum of two sets of linear combinations of suitable harmonic functions that satisfy Laplace equation and the relevant boundary conditions. The effect of fluid level, stiffener's number and position on the coupled vibration characteristics is investigated. To demonstrate the validity of present theoretical method, the published results are compared for simply supported shell and the finite element analysis is performed for unstiffened/stiffened, partially fluid-filled shells with clamped-free boundary condition. (C) 2003 Elsevier Ltd. All rights reserved.
机译:开发了一种理论方法来研究部分填充有具有自由表面的不粘,不可压缩和不可旋转的流体的环形加劲圆柱壳的耦合振动特性。由于在分析中考虑了自由表面波的影响,因此研究了膨胀和晃动模式。基于洛夫的薄壳理论,使用瑞利-里兹(Rayleigh-Ritz)方法推导了加筋环和部分充满流体的壳的频率方程。流体运动速度势的解假定为满足拉普拉斯方程和相关边界条件的两组适当谐波函数的线性组合的总和。研究了液面,加劲肋的数量和位置对耦合振动特性的影响。为了证明本理论方法的有效性,比较了公开结果对简单支撑壳的影响,并对未加筋/加劲,部分充满流体的无夹边条件的壳进行了有限元分析。 (C)2003 Elsevier Ltd.保留所有权利。

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