Mostrando 41 - 60 Resultados de 247 Para Buscar '"Convection (heat transfer)"', tiempo de consulta: 0.40s Limitar resultados
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    “…The maximum convective heat transfer coefficient was observed at the highest concentration of nano-particles in water (2.5%). …”
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  3. 43
    por Munir, Asif, Shahzad, Azeem, Khan, Masood
    Publicado 2014
    “…The major focus of this article is to analyze the forced convective heat transfer in a steady boundary layer flow of Sisko fluid over a nonlinear stretching sheet. …”
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    “…The present work includes a numerical study of natural convection heat transfer in symmetrical and unsymmetrical corrugated annuli filled with H(2)O-Al(2)O(3) nanofluid. …”
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  6. 46
    “…In this article, laminar flow-forced convective heat transfer of Al(2)O(3)/water nanofluid in a triangular duct under constant wall temperature condition is investigated numerically. …”
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  7. 47
    por Ting, Hsien-Hung, Hou, Shuhn-Shyurng
    Publicado 2016
    “…As compared with pure water, at a Peclet number of 7000, a 35% enhancement in the convective heat transfer coefficient, is obtained for an Al(2)O(3)/water nanofluid with 2% particle volume fraction; at the same Peclet number, a 41% enhancement in the convective heat transfer coefficient is achieved for a CuO/water nanofluid with 0.8% particle volume concentration. …”
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    “…This paper presents the experimental forced convective heat transfer coefficient (HTC) of nanorods (NRs) zinc oxide–ethylene glycol nanofluids (ZnO–EG NFs) in laminar flow. …”
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    “…This experimental study provides a comprehensive investigation of natural convection heat transfer inside shallow square cuboid enclosures filled with aluminum oxide–water nanofluid at four different volume concentrations: 0.0%, 0.2%, 0.4%, and 0.8%. …”
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  19. 59
    por Ting, Hsien-Hung, Hou, Shuhn-Shyurng
    Publicado 2015
    “…The objective of this study is to numerically investigate the convective heat transfer of water-based Al(2)O(3) nanofluids flowing through a square cross-section duct with a constant heat flux under laminar flow conditions. …”
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  20. 60
    “…It is noticed that the fluid velocity was reduced for the magnetic parameter, curvature parameter, and slip parameters, while the temperature declined with higher values of the magnetic parameter, Prandtl number, and convective heat transfer. Furthermore, the physical quantities of engineering interest, i.e., the behavior of the skin fraction and the Nusselt number, are presented. …”
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