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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >3D free convective MHD flow of nanofluid over permeable linear stretching sheet with thermal radiation
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3D free convective MHD flow of nanofluid over permeable linear stretching sheet with thermal radiation

机译:纳米流体的3D自由对流MHD流动,渗透线性拉伸板具有热辐射

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摘要

This paper mainly focuses on the influence of transverse magnetic field as well as thermal radiation on threedimensional free convective flow of nanofluid over a linear stretching sheet. One remarkable aspect of this study is that a new micro-convection model namely Patel model has been introduced in view of enhancement of thermal conductivity and hence more heat transfer capability of nanofluid. The non-linear partial differential equations have been converted into strong non-linear ordinary differential equations by employing suitable transformations and these transformed equations are solved by Runga-Kutta method of fourth order along with Shooting technique as well as Secant method for better approximation. From this study, it is found that the presence of magnetic field slows down the fluid motion while it enhances the fluid temperature leading to a reduction in heat transfer rate from the surface. It is also found that enhancing thermal radiation parameter causes a reduction in heat transfer rate. (C) 2017 Elsevier B.V. All rights reserved.
机译:本文主要侧重于横向磁场的影响以及热辐射在线性拉伸板上纳米流体的三维热对流流动的影响。本研究的一个显着方面是,鉴于导热率的增强,并因此提高了一种新的微对模型即髌型模型。非线性局部微分方程已通过采用合适的变换将非线性常规差分方程转换为强的非线性常规方程,并且这些变换式方程由第四顺序的runga-Kutta方法以及拍摄技术以及用于更好的近似的分割方法。从本研究中,发现磁场的存在减慢了流体运动,同时增强了流体温度,导致来自表面的传热速率的降低。还发现增强的热辐射参数导致传热速率的降低。 (c)2017 Elsevier B.v.保留所有权利。

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