首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Buoyancy Effect on a Micropolar Fluid Flow Past a Vertical Riga Surface Comprising Water-Based SWCNT–MWCNT Hybrid Nanofluid Subject to Partially Slipped and Thermal Stratification: Cattaneo–Christov Model
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Buoyancy Effect on a Micropolar Fluid Flow Past a Vertical Riga Surface Comprising Water-Based SWCNT–MWCNT Hybrid Nanofluid Subject to Partially Slipped and Thermal Stratification: Cattaneo–Christov Model

机译:微柱流体流动的浮力效应过去垂直的RIGA表面,包括水基SWCNT-MWCNT杂交纳米流体,受部分滑动和热分层:Cattaneo-Christov模型

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This paper provides a comprehensive analysis of the mixed convective flow that comprises SWCNT-MWCNT/water hybrid nanofluid containing micropolar fluid through a partially slipped vertical Riga surface. A Cattaneo–Christov heat flux model is used to examine the heat transport rate. The energy equation is gaining more significance with the effect of viscous dissipation and thermal stratification. The flow model is transformed by convenient transformation into nondimensionless form. The numerical results of nonlinear complex equations are collected using the bvp4c built-in function from MATLAB which is based on the finite difference method. The graphical results are obtained for both hybrid nanofluid and simple nanofluid. The temperature distribution for hybrid nanofluid is higher than that for simple nanofluid when the solid volume fraction increases. The axial friction factor increases with solid volume fraction, porosity parameter, and mixed convection parameter. The velocity graph varies inversely with nanofluid volume fraction and micropolar parameter.
机译:本文提供了混合对流流动,其包括通过部分滑落垂直里加表面含有微极流体SWCNT的MWCNT /水混合纳米流体的综合分析。甲郭居静-克里斯托夫热通量模型用来考察热传输率。能量方程获得具有粘性耗散和热分层的效果更加显着。流模型是通过方便转化nondimensionless形式转化。非线性复杂的方程的数值结果是使用内置函数从MATLAB的bvp4c这是基于有限差分法收集。图形结果两者混合纳米流体和纳米流体简单获得。用于混合纳米流体的温度分布比为简单的纳米流体的固体体积分数增大时更高。轴向摩擦系数与固相体积分数,孔隙度参数和混合参数对流增加。速度曲线与纳米流体体积分数和微极参数成反比。

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