Numerical analysis of porous flat plate solar collector under thermal radiation and hybrid nanoparticles using two-phase model

被引:60
作者
Xiong, Qingang [1 ,2 ]
Tayebi, Tahar [3 ]
Izadi, Mohsen [4 ]
Siddiqui, Abuzar Abid [5 ]
Ambreen, Tehmina [6 ]
Li, Larry K. B. [7 ]
机构
[1] South China Univ Technol, State Key Lab Pulp & Paper Engn, Guangzhou 510640, Peoples R China
[2] South China Univ Technol, Sch Light Ind & Engn, Guangzhou 510640, Peoples R China
[3] Mohamed El Bachir El Ibrahimi Univ, Fac Sci & Technol, Dept Mech Engn, El Anasser 34030, Algeria
[4] Lorestan Univ, Fac Engn, Mech Engn Dept, Khorramabad, Iran
[5] BZ Univ, Fac Engn & Technol, Dept Basic Sci & Humanities, Multan, Pakistan
[6] Kyungpook Natl Univ, Sch Mech Engn, Daegu 41566, South Korea
[7] Hong Kong Univ Sci & Technol, Dept Mech & Aerosp Engn, Clear Water Bay, Hong Kong, Peoples R China
关键词
Solar energy; Solar collector; Hybrid nanofluid; Porous media; Thermal radiation; Two-phase approach; CONVECTION HEAT-TRANSFER; NATURAL-CONVECTION; FORCED-CONVECTION; PERFORMANCE IMPROVEMENT; OXIDE NANOFLUID; PRESSURE-DROP; ENHANCEMENT; EFFICIENCY; ENERGY; FLOW;
D O I
10.1016/j.seta.2021.101404
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Solar collectors will play a very important role in absorbing solar renewable energy for use in various industries in the future of the world. This study looks at the resulting combination of using porous medium and hybrid nanofluids, in the presence of thermal radiation, on the thermo-hydrodynamic features, heat transfer, supply temperature, and hybrid nanoparticles' distribution within a horizontal flat plate solar collector. The two-phase approach is considered for modelling. The migration of Ag-Al2O3 hybrid nanoparticles due to the Brownian motion and thermophoresis effects was also taken into account. The set of governing equation was numerically solved employing the finite element method. The investigation is performed by reporting the roles of hybrid nanofluid concentration, porosity coefficient, Darcy number, Reynolds number, porous media to hybrid nano fluid thermal conductivity ratio, Brownian motion parameter, thermophoretic parameter, radiation parameter, and Schmidt number. The results indicate that The high values of porosity coefficient, radiation parameter, conductivity ratio, and thermophoretic parameter ameliorate thermophoresis effects, and therefore, a high concentration of nanoparticles was observed near the bottom part of the collector, especially at low Reynolds. Also, Employing hybrid nanofluid lead to a decrease in the heat transfer rate and slightly raised the supply temperature at low Re.
引用
收藏
页数:15
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