Local heat transfer coefficients in spray cooling systems measured with temperature oscillation IR thermography

This paper describes the application of the temperature oscillation IR thermography method to a spray cooling system in order to measure the spatial distribution of the heat transfer coefficients with a resolution of 0.4 mm. This technique allows for the rapid and fluid-independent evaluation of the...

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Veröffentlicht in:International journal of heat and mass transfer 2007-05, Vol.50 (9), p.1953-1962
Hauptverfasser: Freund, S., Pautsch, A.G., Shedd, T.A., Kabelac, S.
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container_end_page 1962
container_issue 9
container_start_page 1953
container_title International journal of heat and mass transfer
container_volume 50
creator Freund, S.
Pautsch, A.G.
Shedd, T.A.
Kabelac, S.
description This paper describes the application of the temperature oscillation IR thermography method to a spray cooling system in order to measure the spatial distribution of the heat transfer coefficients with a resolution of 0.4 mm. This technique allows for the rapid and fluid-independent evaluation of the heat transfer coefficient at the back side of a heat-transferring wall, relying on radiant heating, infrared temperature measurements, and a finite difference model of the wall. The results reveal the distribution of the local heat transfer coefficients over a surface cooled by a single- and a four-nozzle array of a multi-chip spray cooling module. The area averaged results from this method were compared to previous data measured using a conventional approach with a thermal test die and were found to be in good agreement.
doi_str_mv 10.1016/j.ijheatmasstransfer.2006.09.028
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subjects Applied sciences
Design. Technologies. Operation analysis. Testing
Electronics
Exact sciences and technology
Integrated circuits
Local heat transfer coefficient
Semiconductor electronics. Microelectronics. Optoelectronics. Solid state devices
Spray cooling
Temperature oscillations
title Local heat transfer coefficients in spray cooling systems measured with temperature oscillation IR thermography
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