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Flow and heat transfer over an unsteady shrinking sheet with suction in nanofluids

机译:纳米流体中具有吸力的非恒定收缩片上的流动和热传递

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摘要

The unsteady flow over a continuously shrinking surface with wall mass suction in a water based nano fluid containing different type of nanoparticles: Cu, Al_2O_3 and TiO_2 is numerically studied. Similarity equations are obtained through the application of similarity transformation techniques. The shooting method is used to solve the similarity equations for different values of the wall mass suction, the unsteadiness and the nanoparticle volume fraction parameters. The results of skin friction coefficient f"(O) and heat transfer rate -θ'(O) are presented in tables and graphs. It is found that dual solution exists for a certain range of wall mass suction s, volume fraction φ and unsteadiness parameters A The results of velocity and temperature profiles are also presented. It is seen that two values of boundary layer thick ness η_∞ are obtained, which gives two different velocity and temperature profiles that satisfy the bound ary conditions. It is also found that the nanoparticle volume fraction parameter φ and types of nanofluid play an important role to significantly determine the flow behaviour.
机译:数值研究了含有不同类型的纳米粒子:Cu,Al_2O_3和TiO_2的水基纳米流体中具有壁质量吸引作用的连续收缩表面上的非稳态流动。相似度方程是通过相似度转换技术的应用获得的。该射击方法用于求解壁质量吸力,不稳定性和纳米颗粒体积分数参数的不同值的相似性方程。在表和图表中给出了皮肤摩擦系数f“(O)和传热速率-θ'(O)的结果。发现在一定范围内壁质量吸力s,体积分数φ和不稳定性存在对偶解参数A还给出了速度和温度分布的结果,可以看到获得了两个边界层厚度η_∞值,给出了两个满足边界条件的不同速度和温度分布。纳米粒子的体积分数参数φ和纳米流体的类型对于显着确定流动行为起着重要作用。

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