Numerical simulations using Bingham-Papanastasiou and aggregation-adjusted viscosity models show that nanoparticle aggregation alters friction and heat transfer in viscoplastic nanofluid entrance flows, with performance criteria identifying optimal volume fractions up to 5%.
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Aggregation Effects on Heat Transfer in Viscoplastic Nanofluid Entrance Flows
Numerical simulations using Bingham-Papanastasiou and aggregation-adjusted viscosity models show that nanoparticle aggregation alters friction and heat transfer in viscoplastic nanofluid entrance flows, with performance criteria identifying optimal volume fractions up to 5%.