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Vibration analysis of submerged thin FGM cylindrical shells

机译:沉入水中的FGM圆柱壳的振动分析

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This study gives a brief work on vibration characteristics of cylindrical shells submerged in an incompressible fluid. The shell is presumed to be structured from functionally graded material. The effect of the fluid is introduced by using the acoustic wave equation. Love’s first order thin shell theory is utilized in the shell dynamical equations. The problem is framed by combining shell dynamical equations with the acoustic wave equation. Fluid-loaded terms are associated with Hankel function of second kind. Wave propagation approach is employed to solve the shell problem. Some comparisons of numerical results are performed for the natural frequencies of simply supported-simply supported, clamped-clamped and clamped-simply supported boundary conditions of isotropic as well as functionally graded cylindrical shells to check the validity of the present approach. The influence of fluid on the submerged functionally graded cylindrical shells is noticed to be very pronounced.
机译:这项研究对淹没在不可压缩流体中的圆柱壳的振动特性进行了简要的研究。假定外壳由功能渐变材料构成。通过使用声波方程来介绍流体的作用。壳体动力学方程式采用了Love的一阶薄壳理论。通过将壳动力学方程与声波方程相结合来解决该问题。流体加载项与第二类汉克函数相关。利用波传播方法解决了壳问题。对各向同性以及功能梯度圆柱壳的简单支撑-简单支撑,夹紧-夹紧和夹紧-简单支撑边界条件的固有频率进行了数值结果的一些比较,以检验本方法的有效性。注意到流体对浸入的功能梯度圆柱壳的影响非常明显。

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