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Hydromagnetic flow of Jeffrey nanofluid due to a curved stretching surface

机译:杰弗里纳米流体的水磁流引起的弯曲拉伸表面

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摘要

The theme of current examination is to furnish an analysis of magnetohydrodynamic (MHD) Jeffrey nanomaterial fluid flow induced by curved stretchable sheet. Thermophoresis and Brownian motion effects has been utilized. Process of heat transpose is taken out through heat absorption/generation mechanism. Electrical conduction for Jeffrey liquid subject to unvarying applied magnetic field is considered. Mathematical formulation is processed under low magnetic Reynolds number and boundary layer approximations. Induction of suitable transformations generate nonlinear ordinary differential system from arising partial differential system whose solution have been obtained and analyzed. The properties of numerous effective parameters are examined and discussed graphically. Further the physical quantities like surface drag force and local Nusselt number are evaluated numerically. For higher thermophoresis and Brownian motion parameters, temperature field enhances. (C) 2020 Elsevier B.V. All rights reserved.
机译:目前考试的主题是提供由弯曲拉伸板诱导的磁性流体动力学(MHD)Jeffrey纳米材料流体的分析。已经利用了热孔和褐色运动效果。通过吸热/发电机制取出热转钝化的过程。考虑到受到不变的施加磁场的杰弗里液体的电导。在低磁雷诺数和边界层近似下处理数学制剂。合适的变换的诱导产生非线性常差分系统,从产生并分析局部差分系统。检查众多有效参数的性质并以图形方式讨论。此外,数值评估表面拖力和局部纽带数等物理量。对于较高的耐热度和布朗运动参数,温度场增强。 (c)2020 Elsevier B.v.保留所有权利。

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