Title of article
Time-independent hybrid enrichment for finite element solution of transient conduction–radiation in diffusive grey media
Author/Authors
Mohamed، نويسنده , , M. Shadi and Seaid، نويسنده , , Mohammed and Trevelyan، نويسنده , , Jon and Laghrouche، نويسنده , , Omar، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
21
From page
81
To page
101
Abstract
We investigate the effectiveness of the partition-of-unity finite element method for transient conduction–radiation problems in diffusive grey media. The governing equations consist of a semi-linear transient heat equation for the temperature field and a stationary diffusion approximation to the radiation in grey media. The coupled equations are integrated in time using a semi-implicit method in the finite element framework. We show that for the considered problems, a combination of hyperbolic and exponential enrichment functions based on an approximation of the boundary layer leads to improved accuracy compared to the conventional finite element method. It is illustrated that this approach can be more efficient than using h adaptivity to increase the accuracy of the finite element method near the boundary walls. The performance of the proposed partition-of-unity method is analyzed on several test examples for transient conduction–radiation problems in two space dimensions.
Keywords
finite-element method , Partition-of-unity method , Transient conduction–radiation problems , Simplified P 1 approximation , Radiative heat transfer
Journal title
Journal of Computational Physics
Serial Year
2013
Journal title
Journal of Computational Physics
Record number
1485912
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