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contributor authorFerrero, M.
contributor authorScattina, A.
contributor authorChiavazzo, E.
contributor authorCarena, F.
contributor authorPerocchio, D.
contributor authorRoberti, M.
contributor authorToscano Rivalta, G.
contributor authorAsinari, P.
date accessioned2017-05-09T01:00:10Z
date available2017-05-09T01:00:10Z
date issued2013
identifier issn0022-1481
identifier otherht_135_12_121801.pdf
identifier urihttp://yetl.yabesh.ir/yetl/handle/yetl/152279
description abstractLouvered fins perform better than any other geometry in accomplishing the task of enhancing heat transfer of compact heat exchangers without prohibitive costs and pressure drops. For this reason, they are widely adopted for automotive applications. However, in order to improve louveredfin compact heat exchangers, it is strongly required to understand how louvered fins behave regarding both heat transfer and pressure drop taking into account industrial constraints. For this purpose, numerical simulations based on the equations of thermofluid dynamics have been developed for this study. In particular, boundary heat flux and pressure distributions have been analyzed along the louveredfin assembly and around the louvers, and even the effects of the flat portions (central and lateral louvers) have been investigated. In particular, the effects of the main geometrical parameters, such as fin pitch, louver pitch, and louver angle, have been evaluated by performing simulations on 40 different configurations. The results show that there is not one optimum configuration for the heat exchangers. Finally, a detailed procedure for the optimization of louveredfin compact heat exchangers, considering industrial constraints is suggested according to multiple regression technique of the numerical results.
publisherThe American Society of Mechanical Engineers (ASME)
titleLouver Finned Heat Exchangers for Automotive Sector: Numerical Simulations of Heat Transfer and Flow Resistance Coping With Industrial Constraints
typeJournal Paper
journal volume135
journal issue12
journal titleJournal of Heat Transfer
identifier doi10.1115/1.4024758
journal fristpage121801
journal lastpage121801
identifier eissn1528-8943
treeJournal of Heat Transfer:;2013:;volume( 135 ):;issue: 012
contenttypeFulltext


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