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Approximate Analytical Analysis of Unsteady MHD Mixed Flow of Non-Newtonian Hybrid Nanofluid over a Stretching Surface

机译:非牛顿杂交纳米流体在拉伸表面上的近似分析分析

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This paper analyses the two-dimensional unsteady and incompressible flow of a non-Newtonian hybrid nanofluid over a stretching surface. The nanofluid formulated in the present study is?TiO2? ?Ag? ?blood, and TiO2? ?blood, where in this combination TiO2? ?blood is the base fluid and TiO2? ?Ag? ?blood represents the hybrid nanofluid. The aim of the present research work is to improve the heat transfer ratio because the heat transfer ratio of the hybrid nanofluid is higher than that of the base fluid. The novelty of the recent work is the approximate analytical analysis of the magnetohydrodynamics mixed non-Newtonian hybrid nanofluid over a stretching surface. This type of combination, where TiO2 blood is the base fluid and TiO2? ?Ag? ?blood?is the hybrid nanofluid, is studied for the first time in the literature. The fundamental partial differential equations are transformed to a set of nonlinear ordinary differential equations with the guide of some appropriate similarity transformations. The analytical approximate method, namely the optimal homotopy analysis method (OHAM), is used for the approximate analytical solution. The convergence of the OHAM for particular problems is also discussed. The impact of the magnetic parameter, dynamic viscosity parameter, stretching surface parameter and Prandtl number is interpreted through graphs. The skin friction coefficient and Nusselt number are explained in table form. The present work is found to be in very good agreement with those published earlier.
机译:本文分析了在拉伸表面上非牛顿杂交纳米流体的二维不稳定和不可压缩流。在本研究中配制的纳米流体是αtiO2? ?AG? ?血液和TiO2? ?血液,在这种组合TiO2中的哪个? ?血液是基础液和TiO2? ?AG? ?血液代表杂交纳米流体。本研究工作的目的是提高传热比,因为杂交纳米流体的传热比高于基础流体的传热比。最近的作品的新颖性是磁力动力学混合非牛油杂交纳米流体在拉伸表面上的近似分析分析。这种类型的组合,其中TiO2血液是基础液和TiO2? ?AG? ?血液?是杂交纳米流体,首次在文献中研究。基本局部微分方程被转换为一组非线性常分方程,其中具有一些适当的相似性变换的指导。分析近似方法,即最佳同型分析方法(Oham),用于近似分析解决方案。还讨论了奥地姆对特定问题的收敛性。通过图形解释了磁性参数,动态粘度参数,拉伸表面参数和普朗特数的影响。表格中的皮肤摩擦系数和露珠数解释。目前的工作被发现与早些时候发布的人同意。

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