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Non linear vibrations of imperfect fluid-filled viscoelastic cylindrical shells

机译:不完美的流体填充粘弹性圆柱壳的非线性振动

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In this work the effect of geometric imperfections on the non-linear dynamics of simply supported viscoelastic fluid-filled circular cylindrical shells subjected to lateral harmonic load is studied. Donnell's non-linear shallow shell theory is used to model the shell, assumed to be made of a Kelvin-Voigt material type, and a modal solution with eight degrees of freedom is used to describe the lateral displacements. The Galerkin method is applied to derive a set of coupled non-linear ordinary differential equations of motion. The influence of shell geometry, flow velocity and dissipation parameter are studied and special attention is given to resonance curves and bifurcation diagrams. Obtained results show that geometric imperfections together with the viscoelastic dissipation parameter and internal fluid have significant influence on the nonlinear dynamic behavior of the shells as displayed in resonance curves.
机译:在这项工作中,研究了几何缺陷对经受横向谐波载荷的简单支撑的粘弹性流体填充圆柱形壳的非线性动力学的影响。 Donnell的非线性浅壳理论用于模拟壳体,假设由Kelvin-Voigt材料类型制成,并且使用具有八个自由度的模态溶液来描述横向位移。应用Galerkin方法来导出一组耦合的非线性常微分方程。研究了壳几何,流速和耗散参数的影响,并特别注意了共振曲线和分叉图。得到的结果表明,与粘弹性耗散参数和内部流体一起的几何缺陷对壳体中显示的壳体的非线性动态行为有显着影响。

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