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- W4361004069 abstract "Using nanofluids is an applicable way of improving heat transfer. Besides, manipulating internal flows using baffles placed on the walls is a common way of increasing thermal efficiency in industrial energy processes. Two-phase numerical study of CuO-water nanofluid flow inside a constant heat flux channel with consecutive baffles has been done by a modified Lagrangian solver in OpenFOAM. In this way, the Thermophoretic force was implemented as a new submodel into OpenFOAM's library. The effects of various parameters consisting of the baffles' height and spacing as well as Reynolds number and nanoparticles’ volume concentration were analyzed on the pressure drop, heat transfer, and particles’ deposition inside the channel. It was observed that increasing the baffle height ratio AH can improve the Nusselt number up to 85%, however nanoparticle disposition inside the channel becomes 2.5 times more. Also, decreasing the baffle spacing ratio BH has the same effect, increasing the Nusselt number and deposition by about 34% and 17%, respectively. Furthermore, looking at the flow field and particle distribution shows that one or two vortexes were generated after each baffle, having lower concentration than the other regions of the channel. Finally, particle deposition efficiency of different surfaces of the channel was compared with each other and it was reported that particle deposition on the baffles is noticeably higher than on the walls of the channel." @default.
- W4361004069 created "2023-03-30" @default.
- W4361004069 creator A5037844761 @default.
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- W4361004069 date "2023-07-01" @default.
- W4361004069 modified "2023-10-16" @default.
- W4361004069 title "Heat transfer and deposition analysis of CuO-Water nanofluid inside a baffled channel: Two-phase Eulerian–Lagrangian method" @default.
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- W4361004069 doi "https://doi.org/10.1016/j.jtice.2023.104827" @default.
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