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Simplified expressions for dynamic behavior of cylindrical shells uncoupled and coupled with liquids

机译:分离和耦合液体的圆柱壳动力学行为的简化表达式

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The dynamic behavior of cylindrical shells is essential in many practical applications. These include in-vacuum and coupled vibrations of structures with contained fluids. Closed-form solutions are extremely complex since they involve many terms and algebraic operations that require numerical solvers. In this work, a simplified closed-form solution for the free vibration analysis of an empty or filled with an inviscid and incompressible fluid cylindrical tank is presented. The proposed analytical method is developed for a simply supported cylindrical shell, based on an energy formulation obtained with variational calculus, and provides explicit expressions for natural frequencies, which can be easily programmed in a spreadsheet. The fluid is represented by an acoustic cavity, modeled by the wave equation, and the fluid-structure interaction is reduced to an added mass of fluid in the uncoupled shell equations of motion. A finite element model was built using ANSYS software to validate the proposed procedure. The natural frequencies and mode shapes were studied, and the results obtained are consistent with analytical, numerical and experimental results.
机译:在许多实际应用中,圆柱壳的动态行为至关重要。其中包括带有流体的结构的内部真空和耦合振动。封闭式解决方案非常复杂,因为它们涉及许多项和需要数值求解器的代数运算。在这项工作中,提出了一种简化的封闭形式的解决方案,用于对空的或装满无粘性且不可压缩的流体圆柱罐的自由振动进行分析。拟议的分析方法是基于使用变分演算获得的能量公式开发的,用于简单支撑的圆柱壳,并提供了固有频率的明确表达式,可以轻松地在电子表格中对其进行编程。流体由声腔表示,并通过波动方程建模,并且在不耦合的运动壳方程中,流固耦合减少为附加的流体质量。使用ANSYS软件建立了有限元模型,以验证所提出的程序。研究了固有频率和振型,得到的结果与分析,数值和实验结果一致。

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