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首页> 外文期刊>Journal of King Saud University >Analysis of Al 2O 3-Cu nanofluid flow behaviour over a permeable moving wedge with convective surface boundary conditions
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Analysis of Al 2O 3-Cu nanofluid flow behaviour over a permeable moving wedge with convective surface boundary conditions

机译:AL 2 O 3 -CU纳米流体流动在可渗透的移动楔上具有对流的表面边界条件

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This research examines the steady flow and heat transfer over a moving wedge in Al2O3-Cu/water nanofluid with convective boundary condition. The governing partial differential equations (PDEs) are converted into nonlinear ordinary differential equations (ODEs) using similarity variables and then numerically solved using the built-in Matlab function (bvp4c).The impacts of wedge parameter, Biot number parameter, nanoparticle volume fraction, suction parameter together with moving parameter are investigated and presented graphically. The numerical evidences exhibit the existence of non-unique solution only when the free stream and wedge moves in the opposing direction. The range of similarity solutions to existis found to be larger for hybrid nanofluid compared to nanofluid. Also, increasing values of wedge parameter and nanoparticle volume fraction can delay the boundary layer separation. To identify which solution is physically stable, we performed the stability analysis. The results indicate that the first solution is stable.
机译:该研究检查了具有对流边界条件的Al2O3-Cu /水纳米流体中的移动楔上的稳定流动和传热。使用相似变量转换为非线性常微分方程(ODES),然后使用内置MATLAB功能(BVP4C)来转换为非线性常微分方程(ODES)。楔形参数,BIOT数参数,纳米粒子体积分数的影响。研究和移动参数一起的吸入参数并以图形方式呈现。数值证据仅在自由流和楔形在相对方向上移动时,才能存在非唯一解决方案。与纳米流体相比,发现杂交纳米流体的相似溶液的范围较大。而且,楔形参数和纳米颗粒体积分数的增加可以延迟边界层分离。为了确定哪种解决方案是物理稳定的,我们进行了稳定性分析。结果表明第一溶液是稳定的。

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