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- W3142133150 abstract "A variety of nanofluids flowing through multiple parallel pipes were numerically studied to examine the heat enhancement effects. Due to the advantages they bring in the cooling process, nanofluids have provided a new way to improve the performance of thermal systems. A typical nanofluid is made up of a base fluid, which is generally water, and nanoparticles. Some nanofluids even consist of a combination of two different types of nanoparticles, resulting in a hybrid nanofluid. In this study, we investigate the effectiveness of forced convection using different class of nanofluids, as well as water and Ethylene Glycol as a benchmark to assess the nanofluids performance. The five different fluid used were: water, Ethylene Glycol, 1%vol Al2O3/water, 1%vol (Al2O3-Cu)/water and 1%vol TiO2/water. Each of these fluids were investigated at four flow rates, with a constant inlet temperature through a heat exchanger experiencing a constant heat flux q”. It was found that Ethylene Glycol exhibits a large pressure drop, while being an excellent heat extractor. Of all of the mixtures, 1%vol TiO2/water is found to have the highest thermal efficiency when considering the combined heat extraction and friction coefficient. Such fluid is suitable as a cooling fluid." @default.
- W3142133150 created "2021-04-13" @default.
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- W3142133150 date "2021-05-01" @default.
- W3142133150 modified "2023-10-18" @default.
- W3142133150 title "Heat Transfer Enhancement in Multiple Pipes Configuration using Different Fluid Mixtures: A Numerical Approach" @default.
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- W3142133150 doi "https://doi.org/10.1016/j.ijft.2021.100088" @default.
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