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Vibratory response and acoustic radiation of a finite cylindrical shell partially covered with circumferential compliant layers

机译:局部覆盖有圆周柔顺层的有限圆柱壳的振动响应和声辐射

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This work focuses on the vibration and acoustic radiation of a finite circular cylindrical shell, which is partially covered with circumferentially laid compliant layers and immersed in an infinite heavy fluid medium. The finite elastic shell is simply supported and extended by two semi-infinite rigid baffles. The motion of the shell is governed by Donnell's equation and the sound field in the exterior fluid medium satisfies Helmholtz's equation. The compliant layers are modeled using the locally reacting model with the thickness and mass effect of the layer being ignored. The fluid loading is calculated by using a recently developed FFT-based algorithm which can greatly reduce the time cost of computation. Combining the equations of motion of the shell, the four-pole parameters of the compliant layer, and the fluid loading coefficients, an analytical formulation is theoretically established for the shell-coating-fluid system. Solution to this coupling system is obtained by solving a set of algebraic equations. The convergence and effectiveness of the solution is examined. Effects of the stiffness and the coating area ratio of the layers are discussed. Moreover, the present results are compared with those for the longitudinally covered shell. It is found that the axisymmetry of the coatings has an effect on the radiated power of the partially covered shell. A comparison between the analytical results and the numerical results calculated by the in-house codes is also included.
机译:这项工作的重点是有限的圆柱形壳体的振动和声辐射,该壳体的一部分被周向放置的柔顺层覆盖,并浸没在无限重的流体介质中。有限的弹性壳由两个半无限的刚性挡板简单地支撑和延伸。壳体的运动受Donnell方程控制,外部流体介质中的声场满足Helmholtz方程。使用局部反应模型对柔顺层进行建模,忽略层的厚度和质量效应。通过使用最近开发的基于FFT的算法来计算流体载荷,该算法可以大大减少计算的时​​间成本。结合壳体的运动方程,柔顺层的四极参数和流体载荷系数,理论上建立了壳体涂层流体系统的解析公式。通过求解一组代数方程获得该耦合系统的解。研究了该解决方案的收敛性和有效性。讨论了层的刚度和涂层面积比的影响。此外,将当前结果与纵向覆盖壳的结果进行比较。发现涂层的轴对称性对部分覆盖的壳的辐射功率有影响。还包括分析结果与内部代码计算的数值结果之间的比较。

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