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Boundary layer flow past a stretching/shrinking surface beneath an external uniform shear flow with a convective surface boundary condition in a nanofluid

机译:在纳米流体中,具有均匀对流表面边界条件的边界层流经过外部均匀剪切流下方的拉伸/收缩表面

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摘要

The problem of a steady boundary layer shear flow over a stretching/shrinking sheet in a nanofluid is studied numerically. The governing partial differential equations are transformed into ordinary differential equations using a similarity transformation, before being solved numerically by a Runge-Kutta-Fehlberg method with shooting technique. Two types of nanofluids, namely, Cu-water and Ag-water are used. The effects of nanoparticle volume fraction, the type of nanoparticles, the convective parameter, and the thermal conductivity on the heat transfer characteristics are discussed. It is found that the heat transfer rate at the surface increases with increasing nanoparticle volume fraction while it decreases with the convective parameter. Moreover, the heat transfer rate at the surface of Cu-water nanofluid is higher than that at the surface of Ag-water nanofluid even though the thermal conductivity of Ag is higher than that of Cu.
机译:数值研究了纳米流体中拉伸/收缩片材上稳定的边界层剪切流问题。控制的偏微分方程通过相似变换转化为常微分方程,然后用带有射击技术的Runge-Kutta-Fehlberg方法进行数值求解。使用两种类型的纳米流体,即Cu-水和Ag-水。讨论了纳米粒子的体积分数,纳米粒子的类型,对流参数和热导率对传热特性的影响。发现表面上的传热速率随纳米颗粒体积分数的增加而增加,而随对流参数而减小。而且,即使Ag的导热率高于Cu的导热率,Cu-水纳米流体的表面的导热率也比Ag-水纳米流体的表面的导热率高。

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