Constant Property Newtonian Fluid Flow and Heat Transfer overCascaded Fins

Turbulent flow and heat transfer characteristics were studied and analyzed numerically for a constant property Newtonian fluid flowing through a two-dimensional horizontal rectangular cross section channel with staggered, transverse cascaded rectangular-triangular fins (CRTFs) and a constant tempera...

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Veröffentlicht in:Revue des énergies renouvelables 2017-03, Vol.20 (1), p.25-38
Hauptverfasser: Menni, Younes, Azzi, Ahmed, Zidani, Chafika
Format: Artikel
Sprache:eng
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Zusammenfassung:Turbulent flow and heat transfer characteristics were studied and analyzed numerically for a constant property Newtonian fluid flowing through a two-dimensional horizontal rectangular cross section channel with staggered, transverse cascaded rectangular-triangular fins (CRTFs) and a constant temperature along both walls. The governing equations based on  model used to describe the turbulence phenomenon, are solved by the finite volume method using the SIMPLEC-algorithm. Computations were carried out in the fully-developed regime for different Reynolds numbers, and geometric locations. In particular, velocity and temperature fields, skin friction coefficient, and local and average Nusselt numbers were obtained. This study can be a real application in the field of heat exchangers and air plane solar collectors.
ISSN:1112-2242
2716-8247
DOI:10.54966/jreen.v20i1.606