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Simultaneous influence of thermo-diffusion and diffusion-thermo on non-Newtonian hyperbolic tangent magnetised nanofluid with Hall current through a nonlinear stretching surface

机译:通过非线性拉伸表面同时对非牛顿双曲线切换磁化纳米流体对非牛顿双曲线切线的影响

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In this article, the effect of thermo-diffusion and diffusion-thermo on hyperbolic tangent magnetised nanofluid with Hall current past a nonlinear porous stretching surface has been analysed numerically. The impact of thermal slip and chemical reaction are also examined in our current analysis. Rungea??Kuttaa??Merson method and shooting method have been successfully employed to obtain numerical results for the governing nonlinear differentialequations. The impact of Hartmann number, Hall parameter, porosity parameter, fluid parameter, Weissenberg number, Richardson number, concentration buoyancy parameter, Schmidt number, Dufour parameter, Soret number, Prandtl number, chemical reaction parameter, and power-law exponent are discussed and demonstrated graphicallyfor the flow phenomena. Furthermore, the description for Sherwood number, rate of shear stress, and Nusselt number are displayed using tables against all the pertinent parameters. A detailed numerical comparison for the power-law exponent and Prandtl number has been elaborated via tables.
机译:在本文中,在数值上分析了热扩散和扩散 - 热对双曲线切线磁化纳米流体的影响已经进行了数值在非线性多孔拉伸表面的情况下进行了分析。在我们目前的分析中也检查了热滑和化学反应的影响。 Rungea ?? Kuttaa ?? Merson方法和拍摄方法已成功用于获得管理非线性差异的数值结果。讨论和证明了Hartmann号,霍尔参数,孔隙度参数,流体参数,Weissenberg号码,Richardson号,集中浮力参数,施密特号,Dufour参数,Soret号,Prandtl号码,化学反应参数和幂律指数的影响以流现象为本。此外,使用针对所有相关参数的表来显示舍伍德数,剪切应力速率和衬布数的描述。通过表阐述了幂律指数和Prandtl号的详细数值比较。

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