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首页> 外文期刊>Proceedings of the National Academy of Sciences, India, Section A. Physical Sciences >Assorted Graphene-Based Nanofluid Flows Near a Reversed Stagnation Point over an Inclined Permeable Cylinder
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Assorted Graphene-Based Nanofluid Flows Near a Reversed Stagnation Point over an Inclined Permeable Cylinder

机译:各种基于石墨烯的纳米流体在倾斜的渗透圆柱体上的反向停滞点附近流动

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Heat flux enhancement resulting from utilization of variant graphene-based nanoparticles; graphenes, graphene nanoplatelets, graphene oxides (GOs), carbon nanotubes (CNTs which include single and multiple walled CNTs) in a water-base fluid is focussed in the present study. A steady, laminar, incompressible, mixed convective and reversed stagnation point flow together with the consideration of transverse magnetic field over varying angles of an inclined permeable cylinder is analyzed for the heterogeneous nanofluids. The governing partial differential equations based on Tiwari-Das model are reformulated into nonlinear ordinary differential equations by applying similarity expressions. A shooting procedure is opted to reformulate the equations into boundary value problems which are solved by employing a numerical finite difference code utilizing three-stage Lobatto IIIa formula in MATLAB. The effects of constructive parameters toward the model on non-dimensional velocity and temperature disseminations, reduced skin friction coefficient and reduced Nusselt number are graphically reported and discussed in details. It is observed that GOs-water has the lowest heat flux performance under increasing values of wall permeability parameter, curvature parameter and nanoparticle volume fraction as compared to other nanofluids. On contrary, our results demonstrate that graphenes-water has the highest heat flux performance as compared to SWCNTs-water across many emerging parameters considered in this study.
机译:热通量增强造成的利用率变体的石墨烯纳米粒子;石墨烯,石墨烯nanoplatelets,石墨烯氧化物(GOs),碳纳米管包括单一和多壁碳纳米管)水性流体集中在当下研究。对流和逆转驻点流动一起考虑横向磁场在不同角度的倾斜透水汽缸进行了分析异构纳米流体。基于Tiwari-Das微分方程模型新配方为非线性普通吗微分方程通过应用相似表达式。用方程边值由使用解决问题利用数值差分代码在MATLAB三级Lobatto iii a公式。向建设性的影响参数模型无因次速度和温度传播,减少皮肤摩擦系数和减少努塞尔特数图形报道和讨论细节。GOs-water热流最低性能值的增加墙下曲率参数和渗透率参数,纳米粒子体积分数比其他纳米流体。graphenes-water最高的热通量性能比SWCNTs-water许多新兴的参数考虑研究。

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