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Numerical Heat Transfer, Part A: Applications
An International Journal of Computation and Methodology
Volume 67, 2015 - Issue 5
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Original Articles

Finite Volume Solution of a 1-D Hyperbolic Conduction Equation

Pages 497-512 | Received 17 Sep 2013, Accepted 18 Jun 2014, Published online: 10 Dec 2014
 

Abstract

A one-dimensional hyperbolic conduction equation written in primitive variables is solved by a numerical method based on a finite volume formulation. Accuracy of the proposed formulation is verified by exact solutions for homogeneous medium and then applied to composite materials with different conductivity, specific heat, and heat flux lagging constant. Results show quite distinct wave penetration through and reflection at interfaces of dissimilar materials even though the wave speed in the second medium remains identical in all cases. Effect of non-uniform cross-sectional area on wave propagation is also examined. The formulation is straightforward and can be easily extended to multidimensional problems for heterogeneous media with temperature-dependent properties since no special treatments are needed at the interfaces.

Acknowledgments

The author is grateful to the editor for his guidance, to the reviewer for constructive comments, and to Ms. Richardson at the Center of Manufacturing for the preparation of this manuscript.

Notes

Color versions of one or more of the figures in the article can be found online at www.tandfonline.com/unht.

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