DocumentCode :
2508984
Title :
Characteristics of low reynolds number steady air jet impingement heat transfer over vertical flat surfaces
Author :
He, Xin ; Lustbader, Jason A. ; Arik, Mehmet ; Sharma, Rajdeep
Author_Institution :
Nat. Renewable Energy Lab., Golden, CO, USA
fYear :
2012
fDate :
May 30 2012-June 1 2012
Firstpage :
1364
Lastpage :
1371
Abstract :
In this paper, heat transfer characteristics of single-slot steady-impinging air jets on a 25.4 mm × 25.4 mm vertical surface were experimentally investigated. The experiments were conducted with four different nozzles (length × width: 4 mm × 1 mm, 8 mm × 1 mm, 12 mm × 1 mm, and 15 mm × 1 mm). The parameters varied in the testing were Reynolds number (Re) (100 - 2,000) and dimensionless nozzle-to-plate spacing (H/Dh = 5, 10, 15, and 20). Correlations for average Nusselt numbers (Nu) were developed that accurately predict experimental data. The heat transfer coefficient over a vertical surface increases with increasing Re. For a small nozzle-to-plate spacing (H/Dh = 5), the average Nu correlation is not only a function of Re but also a function of nozzle length. For large nozzle-to-plate spacing (H/Dh ≥ 10) and nozzle length larger than 8 mm, the heat transfer coefficient is insensitive to H/Dh and nozzle length. A subset of this data was then compared to synthetic jet data in a separate study.
Keywords :
air; external flows; flow measurement; heat transfer; jets; laminar flow; nozzles; turbulence; Nusselt number; low Reynolds number steady air jet impingement heat transfer; nozzle-to-plate space; nozzles; single-slot steady-impinging air jets; vertical flat surface; vertical surface; Atmospheric modeling; Computational modeling; Facsimile; Heat transfer; Heating; Loss measurement; Measurement uncertainty; Steady jets; heat transfer; impingement cooling;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Thermal and Thermomechanical Phenomena in Electronic Systems (ITherm), 2012 13th IEEE Intersociety Conference on
Conference_Location :
San Diego, CA
ISSN :
1087-9870
Print_ISBN :
978-1-4244-9533-7
Electronic_ISBN :
1087-9870
Type :
conf
DOI :
10.1109/ITHERM.2012.6231579
Filename :
6231579
Link To Document :
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