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Mhd Boundary Layer Heat and Mass Transfer of A Chemically Reacting Casson Fluid Over A Permeable Stretching Surface With Non-Uniform Heat Source/Sink
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نویسنده
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Gireesha B. J. ,Mahanthesh V. ,Rashidi M. M.
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منبع
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International Journal Of Industrial Mathematics - 2015 - دوره : 7 - شماره : 3 - صفحه:247 -260
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چکیده
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The heat and mass transfer analysis for mhd casson uid boundary layer ow over a permeable stretching sheet through a porous medium is carried out. the eect of non-uniform heat gener- ation/absorption and chemical reaction are considered in heat and mass transport equations corre- spondingly. the heat transfer analysis has been carried out for two different heating processes namely; the prescribed surface temperature (pst) and prescribed surface heat ux (phf). after transforming the governing equations into a set of non-linear ordinary differential equations, the numerical solutions are generated by an efficient runge-kutta-fehlberg fourth-fth order method. the solutions are found to be dependent on physical parameters such as casson uid parameter, magnetic parameter, porous parameter, prandtl and schmidt number, heat source/sink parameter, suction/injection parameter and chemical reaction parameter. typical results for the velocity, temperature and concentration profiles as well as the skin-friction coeffcient, local nusselt number and local sherwood number are presented for different values of these pertinent parameters to reveal the tendency of the solutions. the obtained results are compared with earlier results with some limiting cases of the problem and found to be in good agreement.
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کلیدواژه
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Casson Fluid ,Heat Mass Transfer ,Non-Uniform Heat Source/Sink ,Numerical Solution ,Porous Medium ,Chemical Reaction ,Stretching Sheet
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آدرس
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Department Of Mechanical Engineering, Cleveland State University, Cleveland, Ohio, Usa, Usa, Department Of Mechanical Engineering, Cleveland State University, Cleveland, Ohio, Usa, Usa, Dshanghai Key Lab Of Vehicle Aerodynamics And Vehicle Thermal Management Systems, Tongji University, Address: 4800 Cao An Rd., Jiading, Shanghai 201804, China., China
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Authors
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