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contributor authorOneissi, Mohammad
contributor authorHabchi, Charbel
contributor authorRusseil, Serge
contributor authorBougeard, Daniel
contributor authorLemenand, Thierry
date accessioned2019-03-17T10:34:56Z
date available2019-03-17T10:34:56Z
date copyright10/23/2018 12:00:00 AM
date issued2019
identifier issn1948-5085
identifier othertsea_011_01_011014.pdf
identifier urihttp://yetl.yabesh.ir/yetl1/handle/yetl/4256217
description abstractVortex generators (VG) are widely used in multifunctional heat exchangers/reactors for augmenting the heat transfer from fin plates to the working fluid. In this study, numerical simulations for longitudinal VGs are performed for both laminar and turbulent flow regimes. The shear-stress transport (SST) κ–ω model is used for modeling turbulence. Inclination angle for a new streamlined VG configuration called inclined projected winglet pair (IPWP) was varied to study the effect of this angle on the heat transfer enhancement and pressure drop. Response surface methodology (RSM) was used to deduce the inclination angle effects on heat transfer, pressure drop, and vorticity from both local and global points of view. Such study highlights the optimization for this VG configuration for better heat transfer intensification, based on thermal enhancement factor (TEF). Finally, it is found that the VG with inclination angle ranging from 30 deg to 35 deg exhibits the best global performance compared to other inclination angles. This type of studies is important for the enhancement of the thermal performance of heat exchangers and static mixers in various engineering applications.
publisherThe American Society of Mechanical Engineers (ASME)
titleInclination Angle Optimization for “Inclined Projected Winglet Pair” Vortex Generator
typeJournal Paper
journal volume11
journal issue1
journal titleJournal of Thermal Science and Engineering Applications
identifier doi10.1115/1.4041438
journal fristpage11014
journal lastpage011014-10
treeJournal of Thermal Science and Engineering Applications:;2019:;volume( 011 ):;issue: 001
contenttypeFulltext


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