Wyniki wyszukiwania dla: HEAT TRANSFER, NANOFLUIDS, CATTANEO-CHRISTOV HEAT FLOW MODEL - MOST Wiedzy

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Wyniki wyszukiwania dla: HEAT TRANSFER, NANOFLUIDS, CATTANEO-CHRISTOV HEAT FLOW MODEL

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Wyniki wyszukiwania dla: HEAT TRANSFER, NANOFLUIDS, CATTANEO-CHRISTOV HEAT FLOW MODEL

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Wyniki wyszukiwania dla: HEAT TRANSFER, NANOFLUIDS, CATTANEO-CHRISTOV HEAT FLOW MODEL

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Wyniki wyszukiwania dla: HEAT TRANSFER, NANOFLUIDS, CATTANEO-CHRISTOV HEAT FLOW MODEL

  • Cattaneo–Christov heat flow model for copper–water nanofluid heat transfer under Marangoni convection and slip conditions

    Publikacja
    • K. A. k. M. Alharbi
    • N. M. Alshahrani
    • N. Ullah
    • M. N. Khan
    • M. Krawczuk
    • A. A. Mousa
    • S. Ali

    - Scientific Reports - Rok 2022

    This report is devoted to the study of the flow of MHD nanofluids through a vertical porous plate with a temperature-dependent surface tension using the Cattaneo–Christov heat flow model. The energy equation was formulated using the Cattaneo–Christov heat flux model instead of Fourier’s law of heat conduction. The Tiwari–Das model was used to take into account the concentration of nanoparticles when constructing the momentum equation....

    Pełny tekst do pobrania w portalu

  • Turbulence model evaluation for numerical modelling of turbulent flow and heat transfer of nanofluids

    Publikacja

    - Applied Mechanics and Materials - Rok 2016

    In this work, Nusselt number and friction factor are calculated numerically for turbulent pipe flow (Reynolds number between 6000 and 12000) with constant heat flux boundary condition using nanofluids. The nanofluid is modelled with the single-phase approach and the simulation results are compared with experimental data. Ethylene glycol and water, 60:40 EG/W mass ratio, as base fluid and SiO2 nanoparticles are used as nanofluid...

  • Numerical Study of Turbulent Flow and Heat Transfer of Nanofluids in Pipes

    Publikacja

    - HEAT TRANSFER ENGINEERING - Rok 2018

    In this work, Nusselt number and friction factor are calculated numerically for turbulent pipe flow (Reynolds number between 6000 and 12000) with constant heat flux boundary condition using nanofluids. The nanofluid is modelled with the single-phase approach and the simulation results are compared with experimental data. Ethylene glycol and water, 60:40 EG/W mass ratio, as base fluid and SiO2 nanoparticles are used as nanofluid...

    Pełny tekst do pobrania w portalu

  • Numerical study of turbulent flow and heat transfer of nanofluids in pipes

    Publikacja

    - Rok 2015

    In this work, Nusselt number and friction factor are calculated numerically for turbulent pipe flow (6 000 < Re < 12 000) with constant heat flux boundary condition using nanofluids. The nanofluid is modelled with the single-phase approach and the simulation results are compared with experimental data of Vajjha et al. [1]. Ethylene glycol and water, 60:40 EG/W mass ratio, as base fluid and SiO2 nanoparticles are used as nanofluid...

  • Numerical single-phase modeling of turbulent flow and heat transfer of nanofluids

    Publikacja

    - Rok 2015

    In this work, Nusselt number and friction factor are calculated numerically for turbulent pipe flow (6 000< Re < 12 000) with constant heat flux boundary condition using nanofluids. The nanofluid is modelled with the single-phase approach and the simulation results are compared with published experimental data.