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Application of the differential quadrature finite element method to free vibration of elastically restrained plate with irregular geometries

机译:差分正交有限元法在几何不规则弹性约束板自由振动中的应用

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摘要

The virtual spring technique is firstly introduced into the differential quadrature finite element method (DQFEM) to simulate the practical elastic restraints. The imposing procedures of the boundary conditions are simplified so that a certain kind of restraints can be easily achieved by merely setting different stiffness of the springs. The mapping technique is used to apply the DQFEM to irregular domain. The effects of different nodes collocation methods on the mapping results and vibration results are also discussed, through which one can conclude that the nodes distribution methods affect the accuracy of the mapping technique and the computing time. Especially, the uniformly distributed nodes are not the best selection for mapping process. The Guass Lobatto quadrature nodes are the good choice to obtain the better results in a relatively short time. Several numerical examples are carried out to demonstrate the validity and accuracy of the present solution by comparing with the results obtained by other researchers.
机译:首先将虚拟弹簧技术引入差分正交有限元方法(DQFEM)中,以模拟实际的弹性约束。边界条件的施加步骤得以简化,从而仅通过设置不同的弹簧刚度就可以轻松实现某种约束。映射技术用于将DQFEM应用于不规则域。讨论了不同节点配置方法对映射结果和振动结果的影响,可以得出结论,节点分配方法会影响映射技术的准确性和计算时间。特别是,均匀分布的节点不是映射过程的最佳选择。 Guass Lobatto正交节点是在相对较短的时间内获得更好结果的好选择。通过与其他研究人员获得的结果进行比较,通过几个数值示例来证明本解决方案的有效性和准确性。

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