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    • مشاهده مورد
    •   صفحهٔ اصلی
    • نشریات انگلیسی
    • Energy Equipment and Systems
    • Volume 3, Issue 2
    • مشاهده مورد
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    Numerical simulation of Al2O3–water nanofluid mixed convection in an inclined annulus

    (ندگان)پدیدآور
    Imani, HadiCheraqi, AliJafarian, AliHeyhat, Mohammad Mahdi
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    نوع مدرک
    Text
    Research Paper
    زبان مدرک
    English
    نمایش کامل رکورد
    چکیده
    Laminar mixed convection of Aluminium oxide (Al2O3)–water nanofluid flow in an inclined annulus using a single-phase approach was numerically studied. Constant heat flux boundary conditions were applied on the inner and outer walls. All the thermophysical properties of nanofluid, such as, viscosity, heat capacity, thermal conductivity, and thermal expansion coefficient, except density in the body force term were assumed to be constant. Based on Boussinesq's hypothesis, density was assumed to be a linear function of temperature. The nanofluid properties were calculated in terms of constant properties of nanoparticles and the base fluid. Using the finite volume method the continuity, momentum, and energy equations were numerically solved. Numerical simulations were conducted for the nanoparticle concentrations of 0, 2, and 5% and five different inclination angles including-30o,-15o ,0 , +15o, and+30o. Results showed that a variation in the inclination angle affected the Nusselt number on the inner wall more than the outer one. The Nusselt number in negative angles was higher than in the positive ones, so that at a volume fraction of 5%, the average Nusselt number at the inner wall decreased almost 2% when changing the angle from -30o to+30o. The local Friction factor in the positive angles was higher than in the negative ones.
    کلید واژگان
    Inclined Annulus
    Laminar
    Mixed Convection
    nanofluid

    شماره نشریه
    2
    تاریخ نشر
    2015-12-01
    1394-09-10
    ناشر
    University of Tehran
    سازمان پدید آورنده
    Faculty of Mechanical Engineering, Tarbiat Modares University, Iran P.O. Box 14115-143 Tehran, Iran
    Faculty of Aerospace Engineering, KNTU, P .O. Box 16765-3381 Tehran, Iran
    Faculty of Mechanical Engineering, Tarbiat Modares University, Iran P.O. Box 14115-143 Tehran, Iran
    Faculty of Mechanical Engineering, Tarbiat Modares University, Iran P.O. Box 14115-143 Tehran, Iran

    شاپا
    2383-1111
    2345-251X
    URI
    https://dx.doi.org/10.22059/ees.2015.17029
    http://www.energyequipsys.com/article_17029.html
    https://iranjournals.nlai.ir/handle/123456789/95113

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