首页> 外文期刊>Journal of Nanofluids >Zero Mass Flux Dependent on Radiative Magnetohydrodynamics Carreau Nanofluid Over a Radially Surface with Temperature Jump and Slip Flow: A Hybrid Nanofluid Analysis
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Zero Mass Flux Dependent on Radiative Magnetohydrodynamics Carreau Nanofluid Over a Radially Surface with Temperature Jump and Slip Flow: A Hybrid Nanofluid Analysis

机译:零质量依赖于辐射通量磁流体动力学Carreau Nanofluid超过一个径向表面温度跳跃和滑动流:一个混合Nanofluid分析

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摘要

The present study explores the slip flow and heat transfer induced by a radially surface with MHD Carreau nanofluid. In addition, the effects of temperature jump, non-linear radiation and the dependent zero mass flux also taken into account. This study also considers the cross-diffusion effect on temperature and concentration governing profiles. Appropriate transformations are engaged in order to acquire nonlinear differential equations (ODEs) from the partial differential system, their solutions are obtained by Runge-Kutta 4th order with shooting scheme in MATLAB. The impact of pertinent flow parameters such as first and second order velocity slip parameter, temperature jump, magnetic parameter, heat source, radiation parameter, melting surface parameter, temperature ratio parameter on dimensionless velocity, temperature and concentration profiles achieved graphically as well as local skin friction, Nusselt number and Sherwood number are demonstrated in the form of Table. first order velocity slip parameter (slip(1)) on f', theta and phi profile fields. With an increment in the velocity slip first order parameter (slip(1)) we have perceived a fall in the momentum boundary layer and concentration profiles and a growth in the fluid temperature field.
机译:本研究探讨了滑流和热用磁流体动力转移引起的径向表面Carreau nanofluid。辐射和温度跳跃,非线性相关的零质量流量也考虑在内。这项研究也考虑交叉扩散影响温度和集中管理配置文件。为了获得非线性微分从偏微分方程(常微分方程)系统,就能得到他们的解决方案龙格-库塔4日顺序拍摄计划MATLAB。如第一和二阶速度滑移参数,温度跳跃,磁参数,热源辐射参数,表面融化参数,温度比参数无量纲速度、温度和浓度配置文件实现图形以及当地的表面摩擦,努塞尔特和数量舍伍德数的形式展示表格(滑动(1))f ',θ和φ配置字段。与滑动速度的增加命令参数(滑(1))我们认为在动量边界层和下降概要文件和增长的液体浓度温度场。

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