作者: Meraj Mustafa , Junaid Khan
关键词: Numerical analysis 、 Brownian motion 、 Nanofluid 、 Mathematical analysis 、 Prandtl number 、 Schmidt number 、 Physics 、 Thermophoresis 、 Classical mechanics 、 Nusselt number 、 Deborah number
摘要: This article investigates the flow of Maxwell nanofluid over a moving plate in calm fluid. Novel aspects Brownian motion and thermophoresis are taken into consideration. Revised model for passive control nanoparticle volume fraction at is used this study. The formulated differential system solved numerically by employing shooting approach together with fourth-fifth-order-Runge-Kutta integration procedure Newton’s method. solutions greatly influenced variation embedded parameters which include local Deborah number De , parameter Nb Nt Prandtl Pr Schmidt Sc . We found that velocity distribution an increase non-monotonic. Moreover, reduced Nusselt has linear direct relationship number