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Unsteady boundary layer flow and heat transfer over an exponentially shrinking sheet with suction in a copper-water nanofluid

机译:铜-水纳米流体中具有吸力的指数收缩片材上不稳定的边界层流动和传热

摘要

An analysis of unsteady boundary layer flow and heat transfer over an exponentially shrinking porous sheet filled with a copper-water nanofluid is presented. Water is treated as a base fluid. In the investigation, non-uniform mass suction through the porous sheet is considered. Using Keller-box method the transformed equations are solved numerically. The results of skin friction coefficient, the local Nusselt number as well as the velocity and temperature profiles are presented for different flow parameters. The results showed that the dual non-similar solutions exist only when certain amount of mass suction is applied through the porous sheet for various unsteady parameters and nanoparticle volume fractions. The ranges of suction where dual non-similar solution exists, become larger when values of unsteady parameter as well as nanoparticle volume fraction increase. So, due to unsteadiness of flow dynamics and the presence of nanoparticles in flow field, the requirement of mass suction for existence of solution of boundary layer flow past an exponentially shrinking sheet is less. Furthermore, the velocity boundary layer thickness decreases and thermal boundary layer thickness increases with increasing of nanoparticle volume fraction in both non-similar solutions. Whereas, for stronger mass suction, the velocity boundary layer thickness becomes thinner for the first solution and the effect is opposite in the case of second solution. The temperature inside the boundary layer increases with nanoparticle volume fraction and decreases with mass suction. So, for the unsteadiness and for the presence of nanoparticles, the flow separation is delayed to some extent.
机译:提出了一个不稳定的边界层流动和传热的指数收缩的多孔片状填充铜-水纳米流体的分析。水被视为基础流体。在研究中,考虑了通过多孔片的不均匀吸力。使用Keller-box方法对变换后的方程进行数值求解。给出了针对不同流动参数的皮肤摩擦系数,局部Nusselt数以及速度和温度曲线的结果。结果表明,只有当各种不稳定参数和纳米颗粒体积分数通过多孔片施加一定量的质量吸力时,双重非相似溶液才存在。当不稳定参数值以及纳米颗粒体积分数增加时,存在双重非相似溶液的吸力范围会变大。因此,由于流动动力学的不稳定和流场中存在纳米颗粒,对通过指数收缩片材的边界层流的溶液存在的质量吸引的要求降低了。此外,在两种非相似溶液中,随着纳米颗粒体积分数的增加,速度边界层厚度减小而热边界层厚度增加。然而,对于更强的质量抽吸,对于第一解决方案,速度边界层厚度变薄,而对于第二解决方案,效果相反。边界层内部的温度随着纳米颗粒体积分数的增加而增加,并随着吸力的降低而降低。因此,由于不稳定和存在纳米颗粒,流动分离在一定程度上延迟了。

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