4.7 Article

The Improved Element-Free Galerkin Method for 3D Helmholtz Equations

Journal

MATHEMATICS
Volume 10, Issue 1, Pages -

Publisher

MDPI
DOI: 10.3390/math10010014

Keywords

improved element-free Galerkin method; Helmholtz equation; penalty method; improved moving least-squares approximation

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Funding

  1. Science and Technology Innovation Project of Shanxi Colleges and Universities [2020L0344]
  2. Scientific Research Foundation of Taiyuan University of Science and Technology [20202065]

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This paper proposes an improved element-free Galerkin method for solving 3D Helmholtz equations. The method utilizes the improved moving least-squares approximation and penalty technique to ensure accurate solutions. Numerical results demonstrate that the proposed method enhances computational speed and eliminates the singular matrix phenomenon.
The improved element-free Galerkin (IEFG) method is proposed in this paper for solving 3D Helmholtz equations. The improved moving least-squares (IMLS) approximation is used to establish the trial function, and the penalty technique is used to enforce the essential boundary conditions. Thus, the final discretized equations of the IEFG method for 3D Helmholtz equations can be derived by using the corresponding Galerkin weak form. The influences of the node distribution, the weight functions, the scale parameters of the influence domain, and the penalty factors on the computational accuracy of the solutions are analyzed, and the numerical results of three examples show that the proposed method in this paper can not only enhance the computational speed of the element-free Galerkin (EFG) method but also eliminate the phenomenon of the singular matrix.

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