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Effects of Variable Thermal Conductivity and Non-linear Thermal Radiation Past an Eyring Powell Nanofluid Flow with Chemical Reaction

查看全文 作  者:[1]M.Ramzan;[2]M.Bilal;Shamsa [3]Kanwal;Jae Dong [4]Chung 高影响力作者 机构地区:[1]Department of Computer Science, Bahria University,Islamabad Campus;[2]Department of Mathematics, Faculty of Computing,Capital University of Science and Technology;[3]Department of Mathematical Sciences,Fatima Jinnah Women University;[4]Department of Mechanical Engineering,Sejong University高影响力机构 出  处:《Communications in Theoretical Physics》索引2017年第67卷第6期,共9页高影响力期刊 基  金:Supported by the World Class 300 Project(No.S2367878)of the SMBA(Korea) 摘  要:Present analysis discusses the boundary layer flow of Eyring Powell nanofluid past a constantly moving surface under the influence of nonlinear thermal radiation. Heat and mass transfer mechanisms are examined under the physically suitable convective boundary condition. Effects of variable thermal conductivity and chemical reaction are also considered. Series solutions of all involved distributions using Homotopy Analysis method(HAM) are obtained.Impacts of dominating embedded flow parameters are discussed through graphical illustrations. It is observed that thermal radiation parameter shows increasing tendency in relation to temperature profile. However, chemical reaction parameter exhibits decreasing behavior versus concentration distribution. 关 键 词:Eyring Powell nanofluid nonlinear thermal radiation convective boundary condition variable thermal conductivity chemical reaction
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