Experimental Study of Heat Transfer Parameters of Impingement Heating System Represented by Conductive Target Plate of Resistive film

The current experimental study focuses on the heat transfer characteristics and pressure losses for impingement systemwhich is used in cooling the liner of gas turbine combustor. Recent experiment method of conductive heat transfer technique with resistive film in the back side target plate is intro...

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Main Authors: Assim H. Yousif, Amer M. Al Dabagh, Salah H. Abid Aun
Format: Article
Language:English
Published: Unviversity of Technology- Iraq 2016-08-01
Series:Engineering and Technology Journal
Subjects:
Online Access:https://etj.uotechnology.edu.iq/article_115889_a5818fade1241f11cbc82d65103d223d.pdf
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author Assim H. Yousif
Amer M. Al Dabagh
Salah H. Abid Aun
author_facet Assim H. Yousif
Amer M. Al Dabagh
Salah H. Abid Aun
author_sort Assim H. Yousif
collection DOAJ
description The current experimental study focuses on the heat transfer characteristics and pressure losses for impingement systemwhich is used in cooling the liner of gas turbine combustor. Recent experiment method of conductive heat transfer technique with resistive film in the back side target plate is introduced. The present experimental model measured both the heat transfer coefficient for inner target surface and the wall cooling effectiveness for outer target surface. To physically explain the phenomena associated with interaction flow area, a computational fluid dynamic code (Fluent 14) is employed. The continuity, momentum and energy equations arecomputationally solved to analyze the flow field in the jet impingement area. The tests models of the impingement plate are made from round jet holes of inline and staggered arrays arrangement with jet to jet spacing of four-hole diameter. Jet Reynolds numbers of 4200 to 15000 and jet height to diameter ratio of 1.5, 2.0, and 3.0 are maintained. The inline array, as expected enhanced the wall cooling effectiveness over that of the staggered array by10.3%andboth jet spacing and Reynolds number have an evident effect on the discharge coefficient. Empirical correlations are obtained for both arrays arrangement to predict the area-averaged Nusselt number as a function of jet governing parameters.
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spelling doaj.art-ae5fe39bb262445796a723bb888b4c1f2024-02-04T17:27:45ZengUnviversity of Technology- IraqEngineering and Technology Journal1681-69002412-07582016-08-01348A1588160410.30684/etj.34.8A.10115889Experimental Study of Heat Transfer Parameters of Impingement Heating System Represented by Conductive Target Plate of Resistive filmAssim H. YousifAmer M. Al DabaghSalah H. Abid AunThe current experimental study focuses on the heat transfer characteristics and pressure losses for impingement systemwhich is used in cooling the liner of gas turbine combustor. Recent experiment method of conductive heat transfer technique with resistive film in the back side target plate is introduced. The present experimental model measured both the heat transfer coefficient for inner target surface and the wall cooling effectiveness for outer target surface. To physically explain the phenomena associated with interaction flow area, a computational fluid dynamic code (Fluent 14) is employed. The continuity, momentum and energy equations arecomputationally solved to analyze the flow field in the jet impingement area. The tests models of the impingement plate are made from round jet holes of inline and staggered arrays arrangement with jet to jet spacing of four-hole diameter. Jet Reynolds numbers of 4200 to 15000 and jet height to diameter ratio of 1.5, 2.0, and 3.0 are maintained. The inline array, as expected enhanced the wall cooling effectiveness over that of the staggered array by10.3%andboth jet spacing and Reynolds number have an evident effect on the discharge coefficient. Empirical correlations are obtained for both arrays arrangement to predict the area-averaged Nusselt number as a function of jet governing parameters.https://etj.uotechnology.edu.iq/article_115889_a5818fade1241f11cbc82d65103d223d.pdfjet impingementcooling effectivenessdischarge coefficientnusselt number
spellingShingle Assim H. Yousif
Amer M. Al Dabagh
Salah H. Abid Aun
Experimental Study of Heat Transfer Parameters of Impingement Heating System Represented by Conductive Target Plate of Resistive film
Engineering and Technology Journal
jet impingement
cooling effectiveness
discharge coefficient
nusselt number
title Experimental Study of Heat Transfer Parameters of Impingement Heating System Represented by Conductive Target Plate of Resistive film
title_full Experimental Study of Heat Transfer Parameters of Impingement Heating System Represented by Conductive Target Plate of Resistive film
title_fullStr Experimental Study of Heat Transfer Parameters of Impingement Heating System Represented by Conductive Target Plate of Resistive film
title_full_unstemmed Experimental Study of Heat Transfer Parameters of Impingement Heating System Represented by Conductive Target Plate of Resistive film
title_short Experimental Study of Heat Transfer Parameters of Impingement Heating System Represented by Conductive Target Plate of Resistive film
title_sort experimental study of heat transfer parameters of impingement heating system represented by conductive target plate of resistive film
topic jet impingement
cooling effectiveness
discharge coefficient
nusselt number
url https://etj.uotechnology.edu.iq/article_115889_a5818fade1241f11cbc82d65103d223d.pdf
work_keys_str_mv AT assimhyousif experimentalstudyofheattransferparametersofimpingementheatingsystemrepresentedbyconductivetargetplateofresistivefilm
AT amermaldabagh experimentalstudyofheattransferparametersofimpingementheatingsystemrepresentedbyconductivetargetplateofresistivefilm
AT salahhabidaun experimentalstudyofheattransferparametersofimpingementheatingsystemrepresentedbyconductivetargetplateofresistivefilm