Laminar Natural Convection of Water-Based Alumina Nanofluids in a Square Enclosure
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作者:
Malkeson, Sean P.
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Liverpool John Moores Univ, Sch Engn, Liverpool, England
Liverpool John Moores Univ, Sch Engn, Mech Engn, James Parsons Bldg,Byrom St, Liverpool L3 3AF, EnglandLiverpool John Moores Univ, Sch Engn, Liverpool, England
Malkeson, Sean P.
[1
,3
]
Chakraborty, Nilanjan
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Newcastle Univ, Sch Engn, Newcastle Upon Tyne, EnglandLiverpool John Moores Univ, Sch Engn, Liverpool, England
Chakraborty, Nilanjan
[2
]
机构:
[1] Liverpool John Moores Univ, Sch Engn, Liverpool, England
[2] Newcastle Univ, Sch Engn, Newcastle Upon Tyne, England
[3] Liverpool John Moores Univ, Sch Engn, Mech Engn, James Parsons Bldg,Byrom St, Liverpool L3 3AF, England
Steady-state, laminar, natural convection of water-based alumina nanofluids in a square enclosure with partial heating from the bottom and symmetrical cooling from the sides has been investigated based on numerical simulations. The effects of Rayleigh number, normalized heat source length and nanoparticle volume fraction on the heat transfer behavior have been investigated. An increase in Rayleigh number, for given values of normalized heat source length and nanoparticle volume fraction, leads to an increase in Nusselt number. For a given set of values of Rayleigh number based on base-fluid properties and normalized heat source length, the Nusselt number does not vary significantly with increasing nanoparticle volume fraction because the strengthening viscous effects with increasing volume fraction for water-based alumina nanofluids counteracts the enhanced thermal diffusion in nanofluids. However, when effective Rayleigh number is based on nanofluid properties, Nusselt number decreases with increasing nanoparticle volume fraction. For a given set of values of Rayleigh number and nanoparticle volume fraction, the Nusselt number increases with increasing normalized heat source length due to the strengthening of advective transport. A correlation for mean Nusselt number is proposed which adequately captures qualitative and quantitative behavior obtained from the simulations across the considered parameter range.
机构:
Univ Pretoria, Dept Mech & Aeronaut Engn, ZA-0002 Pretoria, South Africa
Duy Tan Univ, Inst Res & Dev, Da Nang, VietnamUniv Pretoria, Dept Mech & Aeronaut Engn, ZA-0002 Pretoria, South Africa
Sharifpur, Mohsen
Giwa, Solomon O.
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Univ Pretoria, Dept Mech & Aeronaut Engn, ZA-0002 Pretoria, South Africa
Olabisi Onabanjo Univ, Dept Mech Engn, Ago Iwoye, NigeriaUniv Pretoria, Dept Mech & Aeronaut Engn, ZA-0002 Pretoria, South Africa
Giwa, Solomon O.
Lee, Kyoung-Yeoll
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Univ Pretoria, Dept Mech & Aeronaut Engn, ZA-0002 Pretoria, South AfricaUniv Pretoria, Dept Mech & Aeronaut Engn, ZA-0002 Pretoria, South Africa
Lee, Kyoung-Yeoll
Ghodsinezhad, Hadi
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Univ Pretoria, Dept Mech & Aeronaut Engn, ZA-0002 Pretoria, South AfricaUniv Pretoria, Dept Mech & Aeronaut Engn, ZA-0002 Pretoria, South Africa
Ghodsinezhad, Hadi
Meyer, Josua P.
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Univ Pretoria, Dept Mech & Aeronaut Engn, ZA-0002 Pretoria, South AfricaUniv Pretoria, Dept Mech & Aeronaut Engn, ZA-0002 Pretoria, South Africa
机构:
Pusan Natl Univ, Global Core Res Ctr Ships & Offshore Plants, Pusan 609735, South KoreaPusan Natl Univ, Global Core Res Ctr Ships & Offshore Plants, Pusan 609735, South Korea
Yoon, Hyun Sik
Jung, Jae Hwan
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Pusan Natl Univ, Dept Naval Architecture & Ocean Engn, Pusan 609735, South KoreaPusan Natl Univ, Global Core Res Ctr Ships & Offshore Plants, Pusan 609735, South Korea
Jung, Jae Hwan
Park, Yong Gap
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Pusan Natl Univ, Dept Mech Engn, Pusan 609735, South KoreaPusan Natl Univ, Global Core Res Ctr Ships & Offshore Plants, Pusan 609735, South Korea