Effect of maximum temperature and heating-cooling repeated cycles on thermal contact resistance of a composite tube

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Abstract

Experimental research results of the operational parameter effect on Thermal Contact Resistance (TCR) in a copper-aluminum L-type finned tube are presented. The investigated operational parameters were the maximum operational temperature and the number of repeated heating-cooling cycles. The TCR was experimentally determined by measuring the total heat supply, core tube wall and inner fin surface temperatures for steady-state and natural-convection conditions. In addition, the specimen was tested through up to 200 heating-cooling cycles. The experimental results showed a TCR increase of 81% at the same time as the average temperature difference between the hot inner flow and cooling air increased from 30°C to 130°C; over the maximum operational temperature (120°C), the TCR increased faster than before; and, after the heating-cooling cycle testing the TCR presented an increase of 31% in respect with the initial value. Such findings may be useful as a reference for preliminary thermal design and as recommendations for optimal operation of heat exchangers based on copper-aluminum L-type finned tubes.

Original languageEnglish
Title of host publicationElectromechanical and Systems Engineering
Pages41-46
Number of pages6
DOIs
StatePublished - 2009
Event5th International Congress of Electromechanical and Systems Engineering - Mexico City, Mexico
Duration: 10 Nov 200814 Nov 2008

Publication series

NameApplied Mechanics and Materials
Volume15
ISSN (Print)1660-9336
ISSN (Electronic)1662-7482

Conference

Conference5th International Congress of Electromechanical and Systems Engineering
Country/TerritoryMexico
CityMexico City
Period10/11/0814/11/08

Keywords

  • Composite L-type finned tube
  • Operational parameters
  • Thermal Contact Resistance

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