作者: M.R. Krishnamurthy , B.C. Prasannakumara , B.J. Gireesha , Rama S.R. Gorla
DOI: 10.1080/23311835.2015.1050973
关键词: Boundary layer 、 Mechanics 、 Heat transfer 、 Ordinary differential equation 、 Differential equation 、 Nanofluid 、 Mathematics 、 Prandtl number 、 Fluid dynamics 、 Flow (mathematics)
摘要: AbstractThis paper considers the problem of steady, boundary layer flow and heat transfer a nanofluid with fluid-particle suspension over an exponentially stretching surface in presence transverse magnetic field viscous dissipation. The velocity wall temperature are assumed to vary according specific exponential form. governing equations partial forms reduced system coupled non-linear ordinary differential using suitable similarity transformations. An effective Runge–Kutta–Fehlberg (RKF-45) is used solve obtained help symbolic software MAPLE. effects parameters—such as interaction parameter, solid volume fraction nanoparticle Prandtl number Eckert number—on heat-transfer characteristics were tabulated. Useful discussions carried out plotted graphs tables. Under limiting cases, c...