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Numerical investigation of three-dimensional hybrid Cu-Al2O3/water nanofluid flow over a stretching sheet with effecting Lorentz force subject to Newtonian heating

机译:牛顿加热作用下洛伦兹力作用下拉伸片材上三维Cu-Al2O3 /水纳米流体混合流的数值研究

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摘要

This work compares the heat transfer characteristics of traditional nanofluid with that of emerging hybrid nanofluid. Hybrid nanofluid, a new type of conventional fluid, has been used toward the enhancement of heat transfer in the boundary layer flow. A new model of thermophysical properties is employed to investigate the effects of Lorentz force over a three-dimensional stretching surface subject to Newtonian heating. Comparisons are obtained through the numerical parametric study, which has been carried out to explore the effects of various physical parameters involved in the problem. From this study it is observed that the heat transfer rate of hybrid nanofluid (Cu-Al2O3/water) is higher than nanofluid (Cu/water) even in the presence of a magnetic field environment. By opting to use different and appropriate nanoparticle proportions in hybrid nanofluid, the desired heat transfer rate can be achieved.
机译:这项工作将传统的纳米流体与新兴的混合纳米流体的传热特性进行了比较。混合纳米流体是一种新型的常规流体,已用于增强边界层流中的热传递。一种新的热物理性质模型被用来研究在牛顿热作用下三维拉伸表面上洛伦兹力的影响。比较是通过数值参数研究获得的,该研究已经进行了探索以解决问题中涉及的各种物理参数的影响。从这项研究中可以观察到,即使在磁场环境下,杂化纳米流体(Cu-Al2O3 /水)的传热速率也比纳米流体(Cu /水)高。通过选择在混合纳米流体中使用不同和适当的纳米颗粒比例,可以实现所需的传热速率。

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