Validation by piv of the numerical study of flow in the two-dimensional turning diffuser
The primary objective of this study is to validate the numerical method applied in the analysis of two-dimensional turning diffuser performance. A sharp 90o two-dimensional turning diffuser of area ratio, AR = 2.16 operated at inflow Reynolds numbers, Rein = 5.786 x 104 - 1.775 x 105 was considered....
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Asian Research Publishing Network
2016
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my.utp.eprints.258292021-08-27T13:06:54Z Validation by piv of the numerical study of flow in the two-dimensional turning diffuser Nordin, N. Karim, Z.A.A. Othman, S. Raghavan, V.R. Seri, S.M. Shaari, M.F. Adzila, S. The primary objective of this study is to validate the numerical method applied in the analysis of two-dimensional turning diffuser performance. A sharp 90o two-dimensional turning diffuser of area ratio, AR = 2.16 operated at inflow Reynolds numbers, Rein = 5.786 x 104 - 1.775 x 105 was considered. The applicability of standard (ske), renormalization group (rngke) and realizable (rke) k-s turbulence models adopted various near wall treatments namely standard wall functions, non-equilibrium walls functions and enhanced wall treatment to simulate the actual cases was assessed. The ske adopted enhanced wall treatment of y+ = 1.1 - 1.8 appears as the best validated model, producing minimal deviation with comparable flow structures to the experimental cases (using particle image velocimetry). ©2006-2016 Asian Research Publishing Network (ARPN). Asian Research Publishing Network 2016 Article NonPeerReviewed https://www.scopus.com/inward/record.uri?eid=2-s2.0-84994300375&partnerID=40&md5=1005f6eeaf2b958f99d12a4699304a00 Nordin, N. and Karim, Z.A.A. and Othman, S. and Raghavan, V.R. and Seri, S.M. and Shaari, M.F. and Adzila, S. (2016) Validation by piv of the numerical study of flow in the two-dimensional turning diffuser. ARPN Journal of Engineering and Applied Sciences, 11 (20). pp. 11948-11953. http://eprints.utp.edu.my/25829/ |
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The primary objective of this study is to validate the numerical method applied in the analysis of two-dimensional turning diffuser performance. A sharp 90o two-dimensional turning diffuser of area ratio, AR = 2.16 operated at inflow Reynolds numbers, Rein = 5.786 x 104 - 1.775 x 105 was considered. The applicability of standard (ske), renormalization group (rngke) and realizable (rke) k-s turbulence models adopted various near wall treatments namely standard wall functions, non-equilibrium walls functions and enhanced wall treatment to simulate the actual cases was assessed. The ske adopted enhanced wall treatment of y+ = 1.1 - 1.8 appears as the best validated model, producing minimal deviation with comparable flow structures to the experimental cases (using particle image velocimetry). ©2006-2016 Asian Research Publishing Network (ARPN). |
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Nordin, N. Karim, Z.A.A. Othman, S. Raghavan, V.R. Seri, S.M. Shaari, M.F. Adzila, S. |
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Nordin, N. Karim, Z.A.A. Othman, S. Raghavan, V.R. Seri, S.M. Shaari, M.F. Adzila, S. Validation by piv of the numerical study of flow in the two-dimensional turning diffuser |
author_facet |
Nordin, N. Karim, Z.A.A. Othman, S. Raghavan, V.R. Seri, S.M. Shaari, M.F. Adzila, S. |
author_sort |
Nordin, N. |
title |
Validation by piv of the numerical study of flow in the two-dimensional turning diffuser |
title_short |
Validation by piv of the numerical study of flow in the two-dimensional turning diffuser |
title_full |
Validation by piv of the numerical study of flow in the two-dimensional turning diffuser |
title_fullStr |
Validation by piv of the numerical study of flow in the two-dimensional turning diffuser |
title_full_unstemmed |
Validation by piv of the numerical study of flow in the two-dimensional turning diffuser |
title_sort |
validation by piv of the numerical study of flow in the two-dimensional turning diffuser |
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Asian Research Publishing Network |
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2016 |
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https://www.scopus.com/inward/record.uri?eid=2-s2.0-84994300375&partnerID=40&md5=1005f6eeaf2b958f99d12a4699304a00 http://eprints.utp.edu.my/25829/ |
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