An Exact Explicit Analytical Solution of the Steady-State Temperature in a Half Space Subjected to a Moving Circular Heat Source

Author:

Laraqi Najib1

Affiliation:

1. University of Paris 10, LEEE, EA 387, 1-Chemin Desvallie`res, 92410 Ville d’Avray, France

Abstract

So far in the literature, the distribution of stationary temperature over the surface of a half space subjected to a moving circular heat source has been reported in an integral or asymptotic form. In this paper, an exact explicit analytical solution is provided, which allows the determination of the temperatures over the contact area with a very short computational time, regardless of the value of the Peclet number. The solution is based on special functions (Bessel and hypergeometric functions) that are pre-programmed under a formal calculation software (e.g., Maple). The results of the proposed solution are in agreement with the asymptotic models available in the literature.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

Reference13 articles.

1. Boussinesq, J. , 1890, “Calcul des Tempe´ratures Successives d’un Milieu Homoge`ne et Atherme Inde´fini que Sillone une Source de Chaleur,” C.R.,110, pp. 1242–1244.

2. Rosenthal, D. , 1935, “Etude The´orique du Re´gime Thermique Pendant la Soudure a` l’Arc,” C.R.,2, pp. 1277–1292.

3. Blok, H. , 1937, “Les Tempe´ratures de Surface dans des Conditions de Graissage Sous Extre^me Pression,” Proc. Sd. World Petrol. Cong.,3, pp. 471–486.

4. Jaeger, J. C. , 1942, “Moving Sources of Heat and the Temperature of Sliding Contacts,” Proc. R. Soc. NSW 76, pp. 203–224.

5. Carslaw, H. S., and Jaeger, J. C., 1959, Conduction of Heat in Solids, Oxford University Press, London.

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