Transient Behavior of Three-Fluid Cross-Flow Heat Exchanger Under the Influence of Temperature Nonuniformity

Author:

Aasi Harpreet Kaur1,Mishra Manish2

Affiliation:

1. Indian Institute of Technology, Roorkee, 247667, Uttarakhand, India e-mail:

2. Indian Institute of Technology, Roorkee, 247667, Uttarakhand, India e-mail:

Abstract

Abstract A typical three-fluid cross-flow heat exchanger with nonuniform inlet temperature in the central (hot) fluid is considered for the present analysis. Steady and transient state behavior of the heat exchanger is observed for four different temperature nonuniformity models along with step excitation in inlet temperature of the central fluid. Longitudinal heat conduction in the separating walls and the effect of fluid back-mixing along with axial dispersion effect are considered within the fluids with constant thermophysical fluid properties. The solution of governing equations has been obtained using implicit finite difference scheme. Temperature distribution over the separating walls has been depicted providing a clear view of the thermal stresses generated in separating walls. The performance for all the four cross-flow arrangements has been analyzed by comparing that with and without nonuniform conditions. It is found that the nonuniformity in inlet temperature has an adverse effect on the performance of heat exchanger.

Funder

Department of Science and Technology, Ministry of Science and Technology

Publisher

ASME International

Subject

Fluid Flow and Transfer Processes,General Engineering,Condensed Matter Physics,General Materials Science

Reference29 articles.

1. Exchange of Heat Between Three Fluids;Engineer,1933

2. Three-Fluid Heat Exchanger Effectiveness;Int. J. Heat Mass Transfer,1967

3. Barron, R. F., and Yeh, S. L., 1976, “Longitudinal Conduction in a Three-Fluid Heat Exchanger,” ASME Paper No. 76-WA/HT-9. 10.1115/76-WA/HT-9

4. A Compact Solution of the Parallel Flow Three-Fluid Heat Exchanger Problem;Int. J. Heat Mass Transfer,1994

5. Thermal Design Theory of Three Fluid Heat Exchangers;Adv. Heat Transfer.,1995

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