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首页> 外文期刊>Neural computing & applications >Impacts of gold nanoparticles on MHD mixed convection Poiseuille flow of nanofluid passing through a porous medium in the presence of thermal radiation, thermal diffusion and chemical reaction
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Impacts of gold nanoparticles on MHD mixed convection Poiseuille flow of nanofluid passing through a porous medium in the presence of thermal radiation, thermal diffusion and chemical reaction

机译:金纳米粒子对通过多孔介质在热辐射,热扩散和化学反应存在下通过多孔介质的MHD混合对流Poiseuille流量的影响

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摘要

Impacts of gold nanoparticles on MHD Poiseuille flow of nanofluid in a porous medium are studied. Mixed convection is induced due to external pressure gradient and buoyancy force. Additional effects of thermal radiation, chemical reaction and thermal diffusion are also considered. Gold nanoparticles of cylindrical shape are considered in kerosene oil taken as conventional base fluid. However, for comparison, four other types of nanoparticles (silver, copper, alumina and magnetite) are also considered. The problem is modeled in terms of partial differential equations with suitable boundary conditions and then computed by perturbation technique. Exact expressions for velocity and temperature are obtained. Graphical results are mapped in order to tackle the physics of the embedded parameters. This study mainly focuses on gold nanoparticles; however, for the sake of comparison, four other types of nanoparticles namely silver, copper, alumina and magnetite are analyzed for the heat transfer rate. The obtained results show that metals have higher rate of heat transfer than metal oxides. Gold nanoparticles have the highest rate of heat transfer followed by alumina and magnetite. Porosity and magnetic field have opposite effects on velocity.
机译:研究了金纳米颗粒对多孔介质中纳米流体MHD Poiseuille流的影响。由于外部压力梯度和浮力力引起混合对流。还考虑了热辐射,化学反应和热扩散的额外影响。圆柱形状的金纳米颗粒被认为是作为常规基础流体的煤油。然而,对于比较,还考虑了另外四种类型的纳米颗粒(银,铜,氧化铝和磁铁矿)。该问题是根据具有合适边界条件的偏微分方程的术语建模,然后通过扰动技术计算。获得用于速度和温度的确切表达。映射图形结果,以便解决嵌入参数的物理。这项研究主要集中在金纳米颗粒上;然而,为了比较,分析了四种其他类型的纳米颗粒即银,铜,氧化铝和磁铁矿以进行传热速率。得到的结果表明,金属具有比金属氧化物更高的热传递速率。金纳米粒子具有最高的热传递速率,然后是氧化铝和磁铁矿。孔隙率和磁场对速度相反。

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