The combined effects of longitudinal heat conduction, flow nonuniformity and temperature nonuniformity in crossflow plate-fin heat exchangers
Journal Article
·
· International Communications in Heat and Mass Transfer
- Aeronautical Development Agency, Bangalore (India)
- USM, Tronoh (Malaysia). School of Mechanical Engineering
An analysis of a crossflow plate-fin compact heat exchanger, accounting for the combined effects of two-dimensional longitudinal heat conduction through the exchanger wall and nonuniform inlet fluid flow and temperature distribution is carried out using a finite element method. A mathematical equation is developed to generate different types of fluid flow/temperature maldistribution models considering the possible deviations in fluid flow. Using these models, the exchanger effectiveness and its deterioration due to the combined effects of longitudinal heat conduction, flow nonuniformity and temperature nonuniformity are calculated for various design and operating conditions of the exchanger. It was found that the performance variations are quite significant in some typical applications.
- OSTI ID:
- 6440405
- Journal Information:
- International Communications in Heat and Mass Transfer, Journal Name: International Communications in Heat and Mass Transfer Vol. 26:5; ISSN 0735-1933; ISSN IHMTDL
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
32 ENERGY CONSERVATION, CONSUMPTION, AND UTILIZATION
320303* -- Energy Conservation
Consumption
& Utilization-- Industrial & Agricultural Processes-- Equipment & Processes
CALCULATION METHODS
CROSSFLOW SYSTEMS
ENERGY TRANSFER
FINITE ELEMENT METHOD
FLUID FLOW
HEAT EXCHANGERS
HEAT TRANSFER
NUMERICAL SOLUTION
PERFORMANCE
TEMPERATURE DISTRIBUTION
320303* -- Energy Conservation
Consumption
& Utilization-- Industrial & Agricultural Processes-- Equipment & Processes
CALCULATION METHODS
CROSSFLOW SYSTEMS
ENERGY TRANSFER
FINITE ELEMENT METHOD
FLUID FLOW
HEAT EXCHANGERS
HEAT TRANSFER
NUMERICAL SOLUTION
PERFORMANCE
TEMPERATURE DISTRIBUTION