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Calculation of natural frequencies and vibration modes of variable thickness cylindrical shells using the Wittrick-Williams algorithm

机译:使用Wittrick-Williams算法计算可变厚度圆柱壳的固有频率和振动模式

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Dynamic stiffness equations are formulated for variable thickness cylindrical shells, under the assumptions of Donnell, Timoshenko and Fliigge theories. Transcendental dynamic stiffness matrices are formed by solving numerically the governing eighth order differential equations using the boundary-value solver COLSYS. Undamped natural frequencies are found using the Wittrick-Williams algorithm. The shell is divided into smaller elements whose clamped end natural frequencies exceed the highest frequency of interest. A parametric study examines the effects of varying the geometry, degree of thickness taper and end conditions on the natural frequencies and mode shapes, providing benchmark results for designers and future researchers.
机译:在Donnell,Timoshenko和Fliigge理论的假设下,为可变厚度的圆柱壳制定了动态刚度方程。先验动态刚度矩阵是通过使用边界值求解器COLSYS对控制的八阶微分方程进行数值求解而形成的。使用Wittrick-Williams算法可以找到未阻尼的固有频率。壳体被划分为较小的元素,它们的钳制端固有频率超过了最高关注频率。参数研究检查了几何形状,厚度锥度和最终条件的变化对固有频率和振型的影响,为设计人员和未来的研究人员提供了基准测试结果。

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