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Nonlinear stability of circular cylindrical shells in axially flowing fluid

机译:圆柱壳在轴向流动流体中的非线性稳定性

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The stability of supported, circular cylindrical shells in compressible, inviscid axial flow is investigated. Nonlinearities due to large amplitude shell motion are considered by using the nonlinear Donnell shallow shell theory and the effect of viscous structural damping is taken into account. Two different in-plane constraints are applied to the shell edges: zero axial force and zero axial displacement; the other boundary conditions are those for simply supported shells. Linear potential flow theory is applied to describe the fluid-structure interaction. Both annular and unbounded external flow are considered by using two different sets of boundary conditions for the flo beyond the shell length: (i) a flexible wall of infinite extent in the longitudinal direction, and (ii) rigid extensions of the shell (baffles). The system is discretised by Galerkin projections and is investigated by using a model involving seven degrees of freedom, allowing for travelling wave response of the shll enad shell axisymmetric contraction. Results for both annular and unbounded external flow show that the system loses stability by divergence through strongly subcritical bifurcations. Jumps to bifurcated positions can happen much before the onset of instability predicted by linear theories, showing the necessity of a nonlinear study.
机译:研究了支撑的圆柱壳在可压缩,无粘性轴向流动中的稳定性。使用非线性Donnell浅壳理论考虑了由于大振幅壳运动引起的非线性,并考虑了粘性结构阻尼的影响。两种不同的平面约束应用于壳体边缘:零轴向力和零轴向位移;其他边界条件是简单支撑壳的边界条件。应用线性势流理论来描述流固耦合。通过使用两个不同的边界条件集来考虑在壳体长度之外的浮球的环形和无边界外部流动:(i)沿纵向无限延伸的柔性壁,以及(ii)壳体的刚性延伸(隔板) 。该系统由Galerkin投影离散化,并使用涉及七个自由度的模型进行了研究,该模型考虑了en壳壳轴对称收缩的行波响应。环形和无边界外部流的结果都表明,系统由于强烈的亚临界分叉而发散,从而失去了稳定性。在线性理论所预测的不稳定性发生之前,跳到分叉的位置就很可能发生,这表明了进行非线性研究的必要性。

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