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典型文献
Entropy Generation and Thermal Radiation Effects on Nanofluid over Permeable Stretching Sheet
文献摘要:
In the present paper,effects of entropy generation and nonlinear thermal radiation on Jeffery nanofluid over permeable stretching sheet with partial slip effect were analyzed.The suitable similarity transformation is utilized for the reduction of a set of governing equations,which are solved by using Differential Transformation Method(DTM)with the help of symbolic software MATHEMATICA.The accuracy of impact of slip parameter on coefficient of skin friction by using DTM and numerical method(Shooting technique with fourth-order Runge-Kutta)is illustrated and good agreement is found.Further,velocity,temperature,nanoparticle volume fraction and entropy generation profiles are shown graphically and studied in detail for various physical parameters.We notice that,as slip parameter rises the velocity and entropy generation profile rises.Enhancement in the effect of nonlinear thermal radiation reduces the entropy generation.
文献关键词:
作者姓名:
S.K.ASHA;G.MALI
作者机构:
Department of Mathematics,Karnatak University,Dharwad 580003,India
文献出处:
引用格式:
[1]S.K.ASHA;G.MALI-.Entropy Generation and Thermal Radiation Effects on Nanofluid over Permeable Stretching Sheet)[J].数学研究及应用,2022(05):523-538
A类:
Nanofluid,Jeffery,Shooting
B类:
Entropy,Generation,Thermal,Radiation,Effects,Permeable,Stretching,Sheet,In,present,paper,effects,entropy,generation,nonlinear,thermal,radiation,nanofluid,permeable,stretching,sheet,partial,slip,were,analyzed,suitable,similarity,transformation,utilized,reduction,set,governing,equations,which,solved,by,using,Differential,Transformation,Method,DTM,help,symbolic,software,MATHEMATICA,accuracy,impact,coefficient,skin,friction,numerical,method,technique,fourth,order,Runge,Kutta,illustrated,good,agreement,found,Further,velocity,temperature,nanoparticle,volume,fraction,profiles,shown,graphically,studied,detail,various,physical,parameters,We,notice,that,as,rises,Enhancement,reduces
AB值:
0.651104
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