2019
DOI: 10.1002/est2.37
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Computational fluid dynamic evaluation of heat transfer enhancement in microchannel solar collectors sustained by alumina nanofluid

Abstract: Nanofluids have produced a wide range of researches for various cooling/heating purposes, owing to the enhanced thermophysical properties they bring by suspending nanoparticles in the base fluid. This work proposes a detailed computational fluid dynamic (CFD) study of heat transfer enhancement in microchannel solar collectors coupled with nanofluid. The accuracy of the numerical model is ensured through a reliable finite element analysis considering the complexity of the three‐dimensional structure of microcha… Show more

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Cited by 3 publications
(1 citation statement)
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“…In figures 4(b) and 5, the temperature of the fluid at the end of the channel is higher than the temperature of the solar cell at that moment. In the same way, as Ahadi et al demonstrated, the accumulation of energy leads locally to a significant increase in the temperature being maximum [35].…”
Section: Model 2: Serpentine Structure Channelmentioning
confidence: 53%
“…In figures 4(b) and 5, the temperature of the fluid at the end of the channel is higher than the temperature of the solar cell at that moment. In the same way, as Ahadi et al demonstrated, the accumulation of energy leads locally to a significant increase in the temperature being maximum [35].…”
Section: Model 2: Serpentine Structure Channelmentioning
confidence: 53%