An Analytical Solution to Transient Heat Conduction in a Composite Region With a Cylindrical Heat Source

Author:

Gu Yian1,O’Neal D. L.1

Affiliation:

1. Energy Systems Laboratory, Department of Mechanical Engineering, Texas A&M University, College Station, TX 77843

Abstract

An approximate analytical solution to the transient heat-conduction problem in a large composite region with an internal cylindrical source is presented. The generalized orthogonal expansion technique is utilized in deriving the solution. Such problems are encountered in the design or simulation of the ground-coupled heat exchangers used in ground-coupled heat pumps. Solutions are presented for the nondimensional temperature as a function of the ratios of the thermal conductivities and thermal diffusivities of the two materials in the layers. To verify the correctness of the solution, comparisons are made between the two-layer composite solution and the classical homogeneous cylindrical source solution and a finite difference solution.

Publisher

ASME International

Subject

Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment

Reference20 articles.

1. Beach, H. L., 1967, “The Application of the Orthogonal Expansion Technique to Conduction Heat Transfer Problems in Multilayer Cylinders,” MS Thesis, N.C. State University, Raleigh, NC.

2. Bulavin P. E. , and KascheevV. M., 1965, “Solution of the Non-Homogeneous Heat Conduction Equation for Multilayered Bodies,” Int. Chem. Eng., Vol. 5, pp. 112–115.

3. Bose, J. E., Parker, J. D., and McQuiston, F. C, 1985, “Design/Data Manual for Closed-Loop Ground-Coupled Heat Pump Systems,” American Society of Heating, Refrigerating, and Air-Conditioning Engineers, Atlanta, GA.

4. Carslaw, H. S., and Jaeger, J. C., 1959, Conduction of Heat in Solids, 2nd Ed., pp. 327–339.

5. Claesson, J., and Dunand, A., 1983, “Heat Extraction from the Ground by Horizontal Pipes—A Mathematical Analysis,” Swedish Council for Building Research, Document DI.

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