二级微极性纳米流体在多孔介质上的流动研究

Aamir Abbas Khan, Muhammad Naveed Khan, N. A. Ahammad, Muhammad Ashraf, Kamel Guedri, A. Galal
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引用次数: 5

摘要

本文主要研究了微极性二级纳米流体对指数拉伸表面多孔介质的传热传质影响。考虑了活化能和黏性耗散对磁效应的影响。此外,为了分析热输运和质量输运的详细情况,评估了薄片表面的浓度和热滑移边界条件。采用方便的相似性变量将非线性控制偏微分方程转化为无量纲偏微分方程,并对其相应的边界条件进行了变换。利用BVP4C MATLAB技术对非线性耦合ode进行了数值求解。得到的数值估计以图形形式显示,以显示各种参数对速度、温度、微旋、浓度分布的重要性。微极性和二级参数的估价值越大,流体速度越快;多孔介质参数的估价值越高,流体速度越快。此外,表面摩擦率随ε和β的增加而增加,而传质率和传热率则相反。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flow investigation of second grade micropolar nanofluid with porous medium over an exponentially stretching sheet
This article mainly focuses on the influence of heat and mass transportation of micropolar second grade nanofluid toward porous medium of an exponentially stretched surface. The significance of activation energy and viscous dissipation with magnetic effect are taken into deliberated. Furthermore, to analyze the heat and mass transport scrutiny the concentration and thermal slip boundary conditions are assessed on the surface of the sheet. The convenient similarity variables are adopted to transfer the non-linear governing PDEs into the dimensionless ODEs and their corresponding boundary conditions also transformed. The nonlinear coupled ODEs are numerically solved by the usage of BVP4C MATLAB technique. The obtained numerical estimations are displayed graphically to display the significance of the various parameters against the velocity, temperature, microrotation, concentration distributions. It is noticed that larger estimations of micropolar and second grade parameter improves the fluid velocity consequently, while opposite trend is found for the higher estimation of porous medium parameter. Further, it is observed that the skin friction rate is boosted by the increment of ε and β , whereas opposite trend is noted against the mass transfer rate and heat transfer rate.
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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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