Turbulent Flow and Endwall Heat Transfer Analysis in a 908 Turning Duct and Comparisons with Measured Data: Part II: Influence of Secondary Flow, Vorticity, Turbulent Kinetic Energy, and Thermal Boundary Conditions on Endwall Heat Transfer

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Bibliographic Details
Main Authors: Kuisoon Kim, Brian G. Wiedner, Cengiz Camci
Format: Article
Language:English
Published: Wiley 2002-01-01
Series:International Journal of Rotating Machinery
Online Access:http://dx.doi.org/10.1155/S1023621X0200012X
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author Kuisoon Kim
Brian G. Wiedner
Cengiz Camci
author_facet Kuisoon Kim
Brian G. Wiedner
Cengiz Camci
author_sort Kuisoon Kim
collection DOAJ
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institution Kabale University
issn 1023-621X
language English
publishDate 2002-01-01
publisher Wiley
record_format Article
series International Journal of Rotating Machinery
spelling doaj-art-260205450b9d4e8785f391405ab702432025-02-03T01:10:20ZengWileyInternational Journal of Rotating Machinery1023-621X2002-01-018212514010.1155/S1023621X0200012XTurbulent Flow and Endwall Heat Transfer Analysis in a 908 Turning Duct and Comparisons with Measured Data: Part II: Influence of Secondary Flow, Vorticity, Turbulent Kinetic Energy, and Thermal Boundary Conditions on Endwall Heat TransferKuisoon Kim0Brian G. Wiedner1Cengiz Camci2Turbomachinery Heat Transfer Laboratory, Department of Aerospace Engineering, The Pennsylvania State University, University Park, Pennsylvania 16802, USATurbomachinery Heat Transfer Laboratory, Department of Aerospace Engineering, The Pennsylvania State University, University Park, Pennsylvania 16802, USATurbomachinery Heat Transfer Laboratory, Department of Aerospace Engineering, The Pennsylvania State University, University Park, Pennsylvania 16802, USAhttp://dx.doi.org/10.1155/S1023621X0200012X
spellingShingle Kuisoon Kim
Brian G. Wiedner
Cengiz Camci
Turbulent Flow and Endwall Heat Transfer Analysis in a 908 Turning Duct and Comparisons with Measured Data: Part II: Influence of Secondary Flow, Vorticity, Turbulent Kinetic Energy, and Thermal Boundary Conditions on Endwall Heat Transfer
International Journal of Rotating Machinery
title Turbulent Flow and Endwall Heat Transfer Analysis in a 908 Turning Duct and Comparisons with Measured Data: Part II: Influence of Secondary Flow, Vorticity, Turbulent Kinetic Energy, and Thermal Boundary Conditions on Endwall Heat Transfer
title_full Turbulent Flow and Endwall Heat Transfer Analysis in a 908 Turning Duct and Comparisons with Measured Data: Part II: Influence of Secondary Flow, Vorticity, Turbulent Kinetic Energy, and Thermal Boundary Conditions on Endwall Heat Transfer
title_fullStr Turbulent Flow and Endwall Heat Transfer Analysis in a 908 Turning Duct and Comparisons with Measured Data: Part II: Influence of Secondary Flow, Vorticity, Turbulent Kinetic Energy, and Thermal Boundary Conditions on Endwall Heat Transfer
title_full_unstemmed Turbulent Flow and Endwall Heat Transfer Analysis in a 908 Turning Duct and Comparisons with Measured Data: Part II: Influence of Secondary Flow, Vorticity, Turbulent Kinetic Energy, and Thermal Boundary Conditions on Endwall Heat Transfer
title_short Turbulent Flow and Endwall Heat Transfer Analysis in a 908 Turning Duct and Comparisons with Measured Data: Part II: Influence of Secondary Flow, Vorticity, Turbulent Kinetic Energy, and Thermal Boundary Conditions on Endwall Heat Transfer
title_sort turbulent flow and endwall heat transfer analysis in a 908 turning duct and comparisons with measured data part ii influence of secondary flow vorticity turbulent kinetic energy and thermal boundary conditions on endwall heat transfer
url http://dx.doi.org/10.1155/S1023621X0200012X
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AT briangwiedner turbulentflowandendwallheattransferanalysisina908turningductandcomparisonswithmeasureddatapartiiinfluenceofsecondaryflowvorticityturbulentkineticenergyandthermalboundaryconditionsonendwallheattransfer
AT cengizcamci turbulentflowandendwallheattransferanalysisina908turningductandcomparisonswithmeasureddatapartiiinfluenceofsecondaryflowvorticityturbulentkineticenergyandthermalboundaryconditionsonendwallheattransfer