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- W4387019969 abstract "AbstractIn this work, a turbulent Eulerian–Eulerian description is utilized to simulate the injection of twin oblique jets of alumina–water nanofluid into a water cross–flow. This technique can be considered as a heat transfer enhancement strategy in cooling technologies. A Taguchi optimization study is undertaken to determine the optimal combination of the involved control factors to achieve the highest heat transfer rate and to explore the contribution ratio of each factor. Inspection of the simulation results demonstrates that about 70% of contribution on the final response belongs to the velocity and the angle of the first jet. Meanwhile, it is elucidated that the presence of the nanoparticles in the injected jets may not alter the heat transfer rate more than 6%. This indicates that with proper selection of the velocity and the angle of the jets (especially the first one), the need to utilize nanofluids will be eliminated.Keywords: NanofluidTurbulent flowTwo–phase flowEulerian–Eulerian modelTaguchi methodDisclaimerAs a service to authors and researchers we are providing this version of an accepted manuscript (AM). Copyediting, typesetting, and review of the resulting proofs will be undertaken on this manuscript before final publication of the Version of Record (VoR). During production and pre-press, errors may be discovered which could affect the content, and all legal disclaimers that apply to the journal relate to these versions also. Disclosure statementThe authors declare no commercial or associate conflicts of interests to disclose.NomenclatureTableDisplay Table" @default.
- W4387019969 created "2023-09-26" @default.
- W4387019969 creator A5060281130 @default.
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- W4387019969 date "2023-10-02" @default.
- W4387019969 modified "2023-10-18" @default.
- W4387019969 title "Turbulent Eulerian–Eulerian simulation and Taguchi optimization of twin oblique nanofluid jets injecting into a water cross–flow" @default.
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- W4387019969 doi "https://doi.org/10.1080/01430750.2023.2255876" @default.
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