Here, we study the effect of mixed convection and thermal radiation on unsteady boundary layer of heat transfer and nanofluid flow over permeable moving surface through a porous medium. The effect of heat generation is also discussed. The equations governing the system are the continuity equation, momentum equation and the heat transfer equation. These governing equations transformed into a system of nondimensional equations contain many physical parameters that describe the study. The transformed equations are solved numerically using an implicit finite difference technique with Newton's linearization method. The thermo-physical parameters describe the study are the mixed convection parameter α, 0 âªÂ α âªÂ 10, the Radiation parameter Rd, 0 âªÂ Rd âªÂ 1.0, porous medium parameter k, 0 âªÂ k âªÂ 1.0, the nanoparticles volume Ï,0 âªÂ  âªÂ 0.2, the suction or injection parameter f(w), - 1 âªÂ fw âªÂ 1, the unsteadiness parameter A(t), 1 âªÂ At âªÂ 2 and the heat source parameter λâ=â0.5 .The influence of the thermo-physical parameters is obtained analytically and displayed graphically. Comparisons of some special cases of the present study are performed with previously published studies and a good agreement is obtained.
Thermal radiation effect on unsteady mixed convection boundary layer flow and heat transfer of nanofluid over permeable stretching surface through porous medium in the presence of heat generation.
热辐射对纳米流体在多孔介质中通过可渗透拉伸表面的非定常混合对流边界层流动和传热的影响(存在热源)。
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| 期刊: | Science Progress | 影响因子: | 2.900 |
| 时间: | 2021 | 起止号: | 2021 Jul-Sep;104(3):368504211042261 |
| doi: | 10.1177/00368504211042261 | ||
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