作者: Ahmad Banji Jafar , Sharidan Shafie , Imran Ullah
DOI: 10.1016/J.HELIYON.2020.E04201
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摘要: Abstract In this article, we numerically investigate the influence of thermal radiation and heat generation on flow an electrically conducting nanofluid past a nonlinear stretching sheet through porous medium with frictional heating. The partial differential equations governing problems are reduced to ordinary via similarity variables. then solved aid Keller box method. physical parameters such as nanoparticle volume fraction ϕ, permeability parameter K, n, magnetic field M, Q Eckert number Ec field, temperature distribution, skin friction Nusselt studied presented in graphical illustrations tabular forms. results obtained reveal that there is enhancement rate transfer rise parameter. distribution also influenced presence Q, R ϕ. This shows solid can be used controlling behaviours flows.