Results 201 to 210 of about 27,777 (244)
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Error analysis of the meshless finite point method
Applied Mathematics and Computation, 2020The finite point method (FPM) is a notable truly meshless method based on the moving least squares (MLS) approximation and the point collocation technique. In this paper, the error of the FPM is analyzed theoretically.
Xiaolin Li, Haiyun Dong
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Optimised meshless method for acoustics
1999Summary: An element-free Galerkin method is formulated for Helmholtz problem. It is based on a moving least squares method. We show that it is possible to determine the speed of propagation of numerical wave and to tune the parameters of the method in order to minimize the dispersion.
Bouillard, Philippe, Suleau, Stéphane
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The basis of meshless domain discretization: the meshless local Petrov?Galerkin (MLPG) method
Advances in Computational Mathematics, 2005zbMATH Open Web Interface contents unavailable due to conflicting licenses.
Atluri, Satya N., Shen, Shengping
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Engineering analysis with boundary elements, 2020
A hybrid meshless method is constructed in this paper for the solution of the second order hyperbolic telegraph equation in two space dimensions with Dirichlet or mixed boundary conditions.
Yunxu Zhou +3 more
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A hybrid meshless method is constructed in this paper for the solution of the second order hyperbolic telegraph equation in two space dimensions with Dirichlet or mixed boundary conditions.
Yunxu Zhou +3 more
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International Journal of Computational Methods, 2019
This paper develops pseudospectral meshless radial point Hermit interpolation (PSMRPHI) and pseudospectral meshless radial point interpolation (PSMRPI) in order to apply to the elliptic partial differential equations (PDEs) held on irregular domains subject to impedance (convective) boundary conditions.
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This paper develops pseudospectral meshless radial point Hermit interpolation (PSMRPHI) and pseudospectral meshless radial point interpolation (PSMRPI) in order to apply to the elliptic partial differential equations (PDEs) held on irregular domains subject to impedance (convective) boundary conditions.
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Engineering computations, 2022
Ji Lin, Jing Bai, S. Reutskiy, Jun-an Lu
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Ji Lin, Jing Bai, S. Reutskiy, Jun-an Lu
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International Journal of Applied Mechanics, 2019
In this study, based on a nonsingular weight function, the improved element-free Galerkin (IEFG) method is presented for solving elastoplastic large deformation problems.
Fengbin Liu, Qiang Wu, Yumin Cheng
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In this study, based on a nonsingular weight function, the improved element-free Galerkin (IEFG) method is presented for solving elastoplastic large deformation problems.
Fengbin Liu, Qiang Wu, Yumin Cheng
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, 2020
This paper presents an integrated, customized routine that uses object-oriented programming and a “super element class” to apply an integrated approach to simulate soil-structure interaction (SSI) problems.
Jinxin Gong +4 more
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This paper presents an integrated, customized routine that uses object-oriented programming and a “super element class” to apply an integrated approach to simulate soil-structure interaction (SSI) problems.
Jinxin Gong +4 more
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, 2020
This paper proposes the topology optimization for steady-state heat conduction structures by incorporating the meshless-based generalized finite difference method (GFDM) and the solid isotropic microstructures with penalization interpolation model.
Qinghai Zhao +3 more
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This paper proposes the topology optimization for steady-state heat conduction structures by incorporating the meshless-based generalized finite difference method (GFDM) and the solid isotropic microstructures with penalization interpolation model.
Qinghai Zhao +3 more
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2014
In this chapter the most important meshless method concepts are detailed introduced. The chapter stars with a generic description on the meshless procedure. Additionally, it is presented a brief comparison between procedures of the finite element method (FEM) and the meshless method.
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In this chapter the most important meshless method concepts are detailed introduced. The chapter stars with a generic description on the meshless procedure. Additionally, it is presented a brief comparison between procedures of the finite element method (FEM) and the meshless method.
openaire +1 more source

