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Cites:

1

Information Journal Paper

Title

MODELING OF TIO2-WATER NANOFLUID EFFECT ON HEAT TRANSFER AND PRESSURE DROP

Pages

  195-202

Keywords

CFD 
TIO2 SINGLE PHASE 

Abstract

 This paper reports a numerical study on the force convection heat transfer and flow characteristics of a NANOFLUID containing water with various volume fractions of TiO2 (0.002< j<0.02). The heat transfer coefficient (Nusselt number) and pressure drop of the NANOFLUID in a horizontal copper tube, under turbulent flow conditions (8000<Re<51000) with a single phase approach were investigated. The Nusselt number was enhanced with increasing the Reynolds number and nanoparticles volume fractions. Besides, with improving the heat transfer coefficient, the pressure drop was increased by using NANOFLUID. Modeling outcomes were compared with the experimental data. This comparison showed good agreement between the experimental data and the simulated results. In addition, two equations were developed to estimate Nusselt number and friction factor based on the dimensionless numbers.

Cites

References

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  • Cite

    APA: Copy

    DAVARNEJAD, R., & MOHAMMADI ARDEHALI, R.. (2014). MODELING OF TIO2-WATER NANOFLUID EFFECT ON HEAT TRANSFER AND PRESSURE DROP. INTERNATIONAL JOURNAL OF ENGINEERING, 27(2 (TRANSACTIONS B: APPLICATIONS)), 195-202. SID. https://sid.ir/paper/607530/en

    Vancouver: Copy

    DAVARNEJAD R., MOHAMMADI ARDEHALI R.. MODELING OF TIO2-WATER NANOFLUID EFFECT ON HEAT TRANSFER AND PRESSURE DROP. INTERNATIONAL JOURNAL OF ENGINEERING[Internet]. 2014;27(2 (TRANSACTIONS B: APPLICATIONS)):195-202. Available from: https://sid.ir/paper/607530/en

    IEEE: Copy

    R. DAVARNEJAD, and R. MOHAMMADI ARDEHALI, “MODELING OF TIO2-WATER NANOFLUID EFFECT ON HEAT TRANSFER AND PRESSURE DROP,” INTERNATIONAL JOURNAL OF ENGINEERING, vol. 27, no. 2 (TRANSACTIONS B: APPLICATIONS), pp. 195–202, 2014, [Online]. Available: https://sid.ir/paper/607530/en

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