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Information Journal Paper

Title

Effects of nanofluids on the boiling-mode cooling of the engine

Pages

  54-77

Abstract

 Recent developments in automotive industry tend reseachers to design Engines of lower volumes and higher efficiencies. Volume reduction enhances the generated heat per volume which in turn requires effective cooling methods to avoid thermal stresses on the Engine walls. Nowadays nanofluids are extensively welcomed and employed as effective working fluids with efficient cooling potentials. In the present study effects of adding nanoparticles to the pure water as the cooling working fluid in the radiator is assessed. The employed nanoparticle is TiO2. A 3D model of Engine with the Cooling passages is simulated by CFD both for the pure fluid (water) and nanofluid. It will be shown employing 1%)vol( TiO2 nanofluid improves cooling heat transfer up to 37% in comparison with the pure water.

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    APA: Copy

    BANIAMERIAN, ZAHRA, & Mehdipour, Ramin. (2019). Effects of nanofluids on the boiling-mode cooling of the engine. JOURNAL OF MECHANICAL ENGINEERING (ISME) (IRANIAN JOURNAL OF MECHANICAL ENGINEERING-ENGLISH), 20(4 ), 54-77. SID. https://sid.ir/paper/83523/en

    Vancouver: Copy

    BANIAMERIAN ZAHRA, Mehdipour Ramin. Effects of nanofluids on the boiling-mode cooling of the engine. JOURNAL OF MECHANICAL ENGINEERING (ISME) (IRANIAN JOURNAL OF MECHANICAL ENGINEERING-ENGLISH)[Internet]. 2019;20(4 ):54-77. Available from: https://sid.ir/paper/83523/en

    IEEE: Copy

    ZAHRA BANIAMERIAN, and Ramin Mehdipour, “Effects of nanofluids on the boiling-mode cooling of the engine,” JOURNAL OF MECHANICAL ENGINEERING (ISME) (IRANIAN JOURNAL OF MECHANICAL ENGINEERING-ENGLISH), vol. 20, no. 4 , pp. 54–77, 2019, [Online]. Available: https://sid.ir/paper/83523/en

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