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Numerical study of entropy generation in Darcy-Forchheimer (D-F) Bödewadt flow of CNTs
Affiliation:1. Department of Mathematics, Quaid-I-Azam University, Islamabad, 44000, Pakistan;2. Pakistan Academy of Sciences (PAS), Islamabad, G-5/2, Pakistan;3. Nonlinear Dynamics Research Centre (NRDC), Ajman University, Ajman, United Arab Emirates;4. Department of Mathematics, Faculty of Science, University of Jordan, Amman, 11942, Jordan
Abstract:Three-dimensional Bödewadt flow (fluid rotates at a large enough distance from the stationary plate) of carbon nanomaterial is examined. Single walled and multi walled CNTs are dissolved in water and gasoline oil baseliquids. Darcy-Forchheimer porous medium is considered. Stationary disk is further stretched linearly in radial direction. Heat transfer effect is examined in presence of radiation and convection. Effect of viscous dissipation is accounted. Entropy generation rate is studied. By using adequate transformation (von Kármán relations), the flow field equations (PDEs) are transmitted into ODEs. Solutions to these ODEs are constructed via implementation of shooting method (bvp4c). In addition to Entropy generation rate, Bejan number, heat transfer rate (Nusselt number), skin friction and temperature of fluid are examined through involved physical parameters. Axial component of velocity intensifies with increment in nanoparticles volume fraction and ratio of stretching rate to angular velocity parameter while it decays with higher porosity parameter. Higher nanoparticles volume fraction and porosity parameter lead to decay in radial as well as tangential component of velocity. However it enhances with higher ratio of stretching rate to angular velocity parameter. Temperature of fluid directly varies with higher ratio of stretching rate to angular velocity parameter, radiation parameter, Eckert number, Biot number and nanoparticles volume fraction. Rate of Entropy generation is reduced with higher estimations of porosity parameter, nanoparticles volume fraction and radiation parameter. Skin friction coefficient decays with higher porosity parameter and ratio of stretching rate to angular velocity parameter. Intensification in porosity parameter, nanoparticles volume fraction and Biot number leads to higher Nusselt number. Prominent impact is shown by multiple-walled CNTs with gasoline oil basefluid than single-walled CNTs with water basefluid.
Keywords:Thermal radiation  Bödewadt flow  CNTs  Water and gasoline oil (baseliquids)  Entropy generation  Darcy-Forchheimer porous medium  Shooting method
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