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Computational analysis of three layer fluid model including a nanomaterial layer

机译:包含纳米材料层的三层流体模型的计算分析

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Multi-layer flows regime occurs in many industrial processes such as petroleum and chemical industry, therefore the study of multi-layer flow in the presence of nanoparticles can be used to obtain desired qualities. This article investigates a vertical three-layer fluid model which incorporates two clear fluid layers and a nanofluid layer which is squeezed between them. A fully developed laminar, incompressible flow field is considered including viscous dissipation effects. The present framework is formulated by capitalizing Buongiorno model which integrate the combined effects of thermophoresis and Brownian motion. The set of ordinary differential equations (ODEs) are non-dimensionalized under appropriate transformations and a nonlinear differential system is than solved by BVPh2.0 solver which is based on an analytical technique named as homotopy analysis method (HAM). Based on the average squared residual error, a procedure for the highly accurate approximation is developed in BVPh2.0. For generalized set of physical parameters it is demonstrated that our obtained solutions are convergent. The influences of governing parameters on the temperature, flow and concentration are analyzed. The result shows a reversed flow for higher values of mixed convection parameter. Furthermore the flow and temperature characteristics at the interface for thermophoresis and Brownian motion parameters are examined numerically.
机译:多层流态发生在许多工业过程中,例如石油和化学工业,因此在存在纳米颗粒的情况下对多层流的研究可用于获得所需的质量。本文研究了一个垂直的三层流体模型,该模型包含两个透明流体层和一个在它们之间被挤压的纳米流体层。考虑到充分发展的层状不可压缩流场,包括粘性耗散效应。本框架是通过利用Buongiorno模型的大写来制定的,该模型整合了热泳和布朗运动的综合作用。常微分方程组(ODE)在适当的变换下未进行维数化,然后使用基于称为同伦分析方法(HAM)的分析技术的BVPh2.0求解器来求解非线性微分系统。根据残差的平方均值,在BVPh2.0中开发了一种高精度逼近的过程。对于广义的物理参数集,证明了我们获得的解是收敛的。分析了控制参数对温度,流量和浓度的影响。结果表明,对于较高的混合对流参数值,流向相反。此外,在数值上检查了用于热泳和布朗运动参数的界面处的流动和温度特性。

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