Influence of nozzle arrangement on flow and heat transfer characteristics of arrays of circular impinging jets
The effect of jet arrangements on flow and heat transfer characteristics was experimentally and numerically investigatedfor arrays of impinging jets. The air jets discharge from round orifices and perpendicularly impinge on a surface within arectangular duct. Both the in-line and staggered arrangeme...
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Prince of Songkla University
2013-04-01
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Series: | Songklanakarin Journal of Science and Technology (SJST) |
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Online Access: | http://rdo.psu.ac.th/sjstweb/journal/35-2/35-2_203-212.pdf |
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doaj-539681483bc84ad8b5fc82cffcb8c40b2020-11-24T22:49:35ZengPrince of Songkla UniversitySongklanakarin Journal of Science and Technology (SJST)0125-33952013-04-01352203212Influence of nozzle arrangement on flow and heat transfer characteristics of arrays of circular impinging jetsPerapong TekasakulChayut NuntadusitMakatar Wae-hayeeThe effect of jet arrangements on flow and heat transfer characteristics was experimentally and numerically investigatedfor arrays of impinging jets. The air jets discharge from round orifices and perpendicularly impinge on a surface within arectangular duct. Both the in-line and staggered arrangements, which have an array of 6×4 nozzles, were examined. A jet-toplate distance (H) and jet-to-jet distance (S) were fixed at H=2D and S=3D, respectively (where D is the round orificediameter). The experiments were carried out at jet Reynolds number Re=5,000, 7,500 and 13,400. Temperature distributions onthe impingement surface were measured using a Thermochromic Liquid Crystal sheet, and Nusselt number distributions wereevaluated using an image processing method. The flow characteristics on the impingement surface were visualized using theoil film technique. The numerical simulation employed to gain insight into the fluid flow of jets between the orifice plate andthe impingement wall was via computational fluid dynamics. The results reveal that the effect of crossflow on the impingingjets for the staggered arrangement is stronger than that in the case of in-line arrangement. In the latter case of in-line arrangement, the crossflow could pass throughout the passage between the rows of jets, whereas in the former case the crossflowwas hampered by the downstream jets. The average Nusselt number of the in-line arrangement is higher than that of thestaggered arrangement by approx. 13-20% in this study.http://rdo.psu.ac.th/sjstweb/journal/35-2/35-2_203-212.pdfarray of impinging jetsin-line and staggered arrangementcrossflowthermochromic liquid crystal sheet (TLCs)oil film techniqueCFD |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Perapong Tekasakul Chayut Nuntadusit Makatar Wae-hayee |
spellingShingle |
Perapong Tekasakul Chayut Nuntadusit Makatar Wae-hayee Influence of nozzle arrangement on flow and heat transfer characteristics of arrays of circular impinging jets Songklanakarin Journal of Science and Technology (SJST) array of impinging jets in-line and staggered arrangement crossflow thermochromic liquid crystal sheet (TLCs) oil film technique CFD |
author_facet |
Perapong Tekasakul Chayut Nuntadusit Makatar Wae-hayee |
author_sort |
Perapong Tekasakul |
title |
Influence of nozzle arrangement on flow and heat transfer characteristics of arrays of circular impinging jets |
title_short |
Influence of nozzle arrangement on flow and heat transfer characteristics of arrays of circular impinging jets |
title_full |
Influence of nozzle arrangement on flow and heat transfer characteristics of arrays of circular impinging jets |
title_fullStr |
Influence of nozzle arrangement on flow and heat transfer characteristics of arrays of circular impinging jets |
title_full_unstemmed |
Influence of nozzle arrangement on flow and heat transfer characteristics of arrays of circular impinging jets |
title_sort |
influence of nozzle arrangement on flow and heat transfer characteristics of arrays of circular impinging jets |
publisher |
Prince of Songkla University |
series |
Songklanakarin Journal of Science and Technology (SJST) |
issn |
0125-3395 |
publishDate |
2013-04-01 |
description |
The effect of jet arrangements on flow and heat transfer characteristics was experimentally and numerically investigatedfor arrays of impinging jets. The air jets discharge from round orifices and perpendicularly impinge on a surface within arectangular duct. Both the in-line and staggered arrangements, which have an array of 6×4 nozzles, were examined. A jet-toplate distance (H) and jet-to-jet distance (S) were fixed at H=2D and S=3D, respectively (where D is the round orificediameter). The experiments were carried out at jet Reynolds number Re=5,000, 7,500 and 13,400. Temperature distributions onthe impingement surface were measured using a Thermochromic Liquid Crystal sheet, and Nusselt number distributions wereevaluated using an image processing method. The flow characteristics on the impingement surface were visualized using theoil film technique. The numerical simulation employed to gain insight into the fluid flow of jets between the orifice plate andthe impingement wall was via computational fluid dynamics. The results reveal that the effect of crossflow on the impingingjets for the staggered arrangement is stronger than that in the case of in-line arrangement. In the latter case of in-line arrangement, the crossflow could pass throughout the passage between the rows of jets, whereas in the former case the crossflowwas hampered by the downstream jets. The average Nusselt number of the in-line arrangement is higher than that of thestaggered arrangement by approx. 13-20% in this study. |
topic |
array of impinging jets in-line and staggered arrangement crossflow thermochromic liquid crystal sheet (TLCs) oil film technique CFD |
url |
http://rdo.psu.ac.th/sjstweb/journal/35-2/35-2_203-212.pdf |
work_keys_str_mv |
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