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Calculating the multi-domain transient heat conduction with heat source problem by virtual boundary meshfree Galerkin method.

Authors :
Yang, Dong-Sheng
Ling, Jing
Wang, Hong-Ying
Chen, Ting-Yi
Du, Yun-Dan
Chen, Shui-Gen
Zhang, Ke-Qi
Source :
Numerical Heat Transfer: Part B -- Fundamentals. 2018, Vol. 74 Issue 1, p465-479. 15p.
Publication Year :
2018

Abstract

The virtual boundary meshfree Galerkin method (VBMGM) is given to calculate the multi-domain transient heat conduction with heat source problem. The radial basis function interpolation is used to obtain the virtual source function on the virtual boundary, the heat source, the particular solutions of the temperature, and the heat flux in the computational domain. The formula of the proposed method is gotten by the Galerkin method and the control equations of the multi-domain transient heat conduction with heat source. Therefore, there are the advantages of the Galerkin method, the boundary element method, and the meshfree method for the multi-domain transient heat conduction with heat source problem by VBMGM. The numerical meaning of the weighted values are definite for the multi-domain transient heat conduction with heat source problem through VBMGM, such as the partial derivatives of the temperature, the heat flux, the heat source, and the continuity conditions on the public boundary at time. The detailed calculation scheme of VBMGM is deducted for the multi-domain transient heat conduction with heat source problem. Two numerical examples, four subdomains with the time-dependent heat source problem and two subdomains with the constant heat source and mixed boundary condition problem, are computed. The accuracy and the stability of VBMGM for the multi-domain transient heat conduction with heat source problem are verified. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10407790
Volume :
74
Issue :
1
Database :
Academic Search Index
Journal :
Numerical Heat Transfer: Part B -- Fundamentals
Publication Type :
Academic Journal
Accession number :
132835901
Full Text :
https://doi.org/10.1080/10407790.2018.1505091