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- W4296062012 abstract "The temperature difference in many applications, such as the polymer industries and heat exchangers, is quite large; consequently, the variation in the density of working fluid due to the temperature is significant. Therefore, the nonlinear variation of density with respect to the temperature cannot be ignored as it influences the rheological behaviors of the working fluid immensely. Furthermore, there is a disparity in the modeling of Rosseland thermal radiation when quadratic (nonlinear) convection is significant. This study focuses on presenting an appropriate model of quadratic Boussinesq convection and quadratic Rosseland thermal radiation in a heat transfer problem. Therefore, a numerical study of the flow and heat transport of a non-Newtonian viscoelastic fluid over an elongated plate with transpiration cooling is carried out. The nonlinear form of the Boussinesq approximation is considered, along with an appropriate approach is proposed for modeling the Rosseland radiative heat flux. The governing equations consisting of modified Navier-Stokes momentum, conservation of mass, conservation of energy, and modified basic state equation. The nonlinear self-similar governing equations are solved by using finite difference method-based routine. The importance of the quadratic thermal convection number, quadratic thermal radiation, viscoelastic fluid parameter and suction/ injection factor on the heat transfer phenomenon is discussed. Streamlines are also drawn to study the flow pattern subject to nonlinear convection. It is established that the rate of heat transport increases with the viscoelastic behavior of the working fluid. The thickness of the momentum boundary layer enlarged due to the nonlinear variation of the density with temperature. The results of the conventional mixed convection model are obtained from the present study by setting to zero the value of the nonlinear convection parameter. Also, setting a unit value to the temperature ratio in the present problem, the results of linearized Rosseland thermal radiation problem. The present simulations are applicable in the polymer and heat exchanger industry." @default.
- W4296062012 created "2022-09-17" @default.
- W4296062012 creator A5036622562 @default.
- W4296062012 date "2022-01-01" @default.
- W4296062012 modified "2023-09-30" @default.
- W4296062012 title "Numerical Study of Quadratic Boussinesq Non-Newtonian Viscoelastic Fluid with Quadratic Rosseland Thermal Radiation" @default.
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- W4296062012 doi "https://doi.org/10.1007/978-981-19-5201-2_13" @default.
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