Temperature Fields Generated by a Circular Heat Source: Solution of a Composite Solid of Two Different Isotropic Semi-Infinite Media

Author:

Emanuel Michael1,Emanuel Avi2

Affiliation:

1. C-Therm Technologies, Ltd., 494 Queen Street, Fredericton, NB E3B 1B6, Canada

2. A.E. Consulting Services, 21 Hildreen Avenue, Fairmount, Johannesburg 2192, South Africa

Abstract

Abstract The problem of a three-dimensional (3D) heat flow from a circular heat source (CHS) embedded inside a composite solid of two isotropic but different semi-infinite media is solved for the first time in this paper. This CHS asymmetrical measurement setup is useful when two identical samples are not available for measurement. Two different time-dependent temperature fields are derived for the composite semi-infinite media, as well as their corresponding heat fluxes. The derivation of the 3D solution uses first principles with basic assumptions and employs the Hankel and Laplace transforms. The Laplace inversion theorem is used to find the inverse Laplace transform of the temperature functions, since no tabulated inverse transform functions are available for this case. The solution is exact with no approximations and is given in an integral form, which can easily be evaluated numerically. This solution is a generic one and can be applied to more complex asymmetrical setups, such as the case involving thermal contact resistances.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Condensed Matter Physics,General Materials Science

Reference20 articles.

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3. Some Conduction Problems in the Heating of Small Areas on Large Solids;Q. J. Mech. Appl. Math.,1957

4. Transient Heat Flow From Constant Temperature Spheroids and the Thin Circular Disk;Q. J. Mech. Appl. Math.,1964

5. Large Time Solutions for Temperatures in a Semi-Infinite Body With a Disk Heat Source;Int. J. Heat Mass Transfer,1981

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