Optimization of fluid flow and internal geometric structure of volumes cooled by forced convection in an array of parallel tubes

dc.contributor.authorCanhoto, Paulo
dc.contributor.authorReis, A. Heitor
dc.date.accessioned2012-01-18T16:59:11Z
dc.date.available2012-01-18T16:59:11Z
dc.date.issued2011-09
dc.description.abstractThis paper reports the optimization of a heat sink composed of parallel tubes in a solid matrix of fixed dimensions for the following cases: (i) fixed pressure drop; (ii) fixed pumping power and (iii) fixed heat transfer rate density. The method of the intersection of asymptotes is employed using the dimensionless thermal length (x⁄) as primary optimization variable, and approximate theoretical expressions for predicting the optimum ratio of diameter to tube length (D/L) are presented for each case. When the system is optimized with fixed heat transfer density it is found that the optimum values of both x⁄ and D/L are very close to those that correspond to the joint minimization of pressure drop and pumping power. Theseresults are validated and complemented by means of numerical simulations.por
dc.identifier.authoremailcanhoto@uevora.pt
dc.identifier.authoremailahr@uevora.pt
dc.identifier.citation5. P. Canhoto and A. Heitor Reis, 2011,“Optimization of fluid flow and internal geometric structure of volumes cooled by forced convection in an array of parallel tubes”, Int. J. Heat Mass Transfer 54 (2011) 4288–4299.por
dc.identifier.doi10.1016/j.ijheatmasstransfer.2011.05.016
dc.identifier.scientificarea286por
dc.identifier.sharewithFISpor
dc.identifier.urihttp://hdl.handle.net/10174/3797
dc.language.isoporpor
dc.peerreviewedyespor
dc.publisherElsevierpor
dc.rightsrestrictedAccesspor
dc.subjectHeat sinkspor
dc.subjectForced convectionpor
dc.subjectLaminar flowpor
dc.subjectLaminar flow Optimization Intersection of asymptotes methodpor
dc.titleOptimization of fluid flow and internal geometric structure of volumes cooled by forced convection in an array of parallel tubespor
dc.typearticlepor
degois.publication.firstPage4288por
degois.publication.lastPage4299por
degois.publication.titleInternational Journal of Heat and Mass Transferpor
degois.publication.volume54por

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