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Impact of metal oxide nanoparticles on unsteady stagnation point flow of the hybrid base fluid along a flat surface

机译:金属氧化物纳米粒子对平坦表面杂交碱液流体不稳定停滞点流的影响

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This paper deals with a detailed investigation of the effects of various metal oxide nanoparticles on unsteady stagnation point flow of a hybrid base fluid impinging on a flat surface. The ‘single-phase’ nanofluid model, i.e., the Tiwari and Das model, is considered for the study. We consider water and ethylene glycol in 1:1 ratio as the base fluid and four different types of metal oxides, namely, CuO, TiO$_2$, ZnO and MgO as the nanoparticles. Using similarity transformations, the conservation equations are transformed into self-similar ordinary differential equations. Dual and unique similarity solutions are obtained for certain set of values of parameters. The analysis explores many important findings. Dual self-similar solutions exist up to a certain critical value of the decelerating unsteady parameter and the critical value is independent of the type of metal oxide nanoparticles considered. The strongest surface drag force is observed for the nanofluid with CuO nanoparticles, while the weakest is for the nanofluid with MgO nanoparticles. The heat transfer rate is highest for the nanofluid with CuO nanoparticles and lowest for the nanofluid with TiO$_2$ nanoparticles. Also, the boundary layer is thickest for the nanofluid with MgO nanoparticles.
机译:本文涉及各种金属氧化物纳米颗粒对撞击平坦表面撞击的混合碱液流体的不稳定停滞点流的详细研究。研究中,“单相”纳米流体模型,即Tiwari和DAS模型,被认为是研究。我们认为水和乙二醇在1:1的比例中作为基础流体和四种不同类型的金属氧化物,即CuO,TiO $ _2 $,ZnO和MgO作为纳米颗粒。使用相似性转换,将保护方程转换为自相似的常微分方程。为某些参数值集获得双和独特的相似解。分析探讨了许多重要发现。双自相似解决方案存在于减速不稳定参数的某个临界值,临界值与考虑的金属氧化物纳米颗粒的类型无关。用CuO纳米颗粒对纳米流体观察最强的表面拖曳力,而最弱的是用MgO纳米颗粒的纳米流体。具有CuO纳米粒子的纳米流体最高的传热速率最高,最低用于纳米流体,用TiO $ _2 $纳米颗粒。而且,边界层对于具有MgO纳米颗粒的纳米流体最厚。

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