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A CFD study of heat transfer through spacer channels of membrane distillation modules
2013
Desalination and Water Treatment
A B S T R A C T The computational fluid dynamics modeling in this paper examines transient flow and temperature patterns in spacer-filled membrane distillation channels. The instantaneous velocity profiles at various time steps show that at higher Reynolds number the vortices emerge behind spacer filaments, move along with the flow and then finally diminish. This unsteady behavior causes variation in local temperatures and heat transfer coefficients with time. The temperature polarization is
doi:10.1080/19443994.2013.789234
fatcat:x3thmg7guvbcdhsgyjgytb4pfa