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ENHANCEMENT OF THE HEAT TRANSFER DUE TO THE LAMINAR FORCED CONVECTION OF A NANOFLUID IN A CHANNEL

机译:由于层流中纳米流体中的层流导致引起的热传递增强

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A steady laminar forced convection in a parallel-plane channel using nanofluids is studied. The flow is assumed to be fully developed, and described through the Hagen-Poiseuille profile. A boundary temperature varying with the longitudinal coordinate in the thermal entrance region is prescribed. A study of the thermal behaviour of the nanofluid is performed by solving numerically the fully elliptic coupled equations. The numerical solution is obtained by Galerkin's finite element method implemented through the software package Comsol Multiphysics (Comsol, Inc.). The paper shows that, for physically interesting values of the Peclet number and for physically interesting boundary conditions, the concentration field depends very weakly on the temperature distribution.
机译:研究了使用纳米流体的平行平面通道中的稳态层压对流。假设流动完全开发,并通过Hagen-Poiseuille型材描述。规定了与热入口区域中的纵向坐标变化的边界温度。通过求解数值完全椭圆耦合方程,通过求解纳米流体的热行为的研究。通过软件包Comsol Multiphysics(Comsol,Inc.)实现的Galerkin的有限元方法获得了数值解决方案。本文表明,对于Peclet号的物理有趣值和物理有趣的边界条件,浓度场在温度分布上非常弱。

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