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Heat transmission of magnetic Carreau fluid past a stretching surface with suction/injection
This article studies the heat transfer characteristics of magnetic Carreau fluid at the stagnation region with Joule heating and thermal radiation over an elongating surface. The flow governing partial differential equations are transmuted into ordinary differential equations by using appropriate similarity transformations and subsequently resolved by Runge–Kutta numerical approach based on shooting technique. The influencing patterns of various physical parameters on the velocity and thermal profiles are described graphically. The wall friction coefficient and Nusselt number are tabulated accordingly with suitable interpretations. Magnetic field influences to elevate the temperature and shrink the velocity, but the flow velocity develops by applying for Weissenberg and power‐law index number. It can be deduced that the heat transport in comparison to suction is superior to the injection case.
Heat transmission of magnetic Carreau fluid past a stretching surface with suction/injection
This article studies the heat transfer characteristics of magnetic Carreau fluid at the stagnation region with Joule heating and thermal radiation over an elongating surface. The flow governing partial differential equations are transmuted into ordinary differential equations by using appropriate similarity transformations and subsequently resolved by Runge–Kutta numerical approach based on shooting technique. The influencing patterns of various physical parameters on the velocity and thermal profiles are described graphically. The wall friction coefficient and Nusselt number are tabulated accordingly with suitable interpretations. Magnetic field influences to elevate the temperature and shrink the velocity, but the flow velocity develops by applying for Weissenberg and power‐law index number. It can be deduced that the heat transport in comparison to suction is superior to the injection case.
Heat transmission of magnetic Carreau fluid past a stretching surface with suction/injection
Chalavadi, Sulochana (Autor:in) / Savita (Autor:in)
Heat Transfer ; 51 ; 641-657
01.01.2022
17 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
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