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A numerical approach based on the meshless collocation method in elastodynamics
DOI:10.1007/s10409-009-0236-8.png)
Abstract
En 中文
In this paper, a collocation technique with the modified equilibrium on line method (ELM) for imposition of Neumann (natural) boundary conditions is presented for solving the two-dimensional problems of linear elastic body vibrations. In the modified ELM, equilibrium over the lines on the natural boundary is satisfied as Neumann boundary condition equations. In other words, the natural boundary conditions are satisfied naturally by using the weak formulation. The performance of the modified version of the ELM is studied for collocation methods based on two different ways to construct meshless shape functions: moving least squares approximation and radial basis point interpolation. Numerical examples of two-dimensional free and forced vibration analyses show that by using the modified ELM, more stable and accurate results would be obtained in comparison with the direct collocation method.
Keywords:
Free and forced vibration
Meshless collocation method
Modified equilibrium on line method
Moving least squares (MLS)
Radial basis functions (RBF)

