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首页> 外文期刊>Letters in heat and mass transfer >Investigation effect of nanoparticle mean diameter on mixed convection Al_2O_3-water nanofluid flow in an annulus by two phase mixture model
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Investigation effect of nanoparticle mean diameter on mixed convection Al_2O_3-water nanofluid flow in an annulus by two phase mixture model

机译:两相混合模型研究纳米颗粒平均直径对环空混合对流Al_2O_3-水纳米流体流动的影响

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In this paper, laminar mixed convection of nanofluid(Al_2O_3-water)in horizontal concentric annulus with constant heat flux boundary condition has been studied. Two thermal boundary conditions were investigated, one in which a uniform heat flux at the inner wall and an adiabatic at the other wall, and the other inner and outer walls were heated in a same heat flux. Two phase mixture model employed to investigate effect of mean diameter of nanoparticle on the hydrodynamics and thermal characteristic. The fluid flow properties are assumed constant except for the density in the body force, which varies linearly with the temperature(Boussinesq's hypothesis), thus the fluid flow characteristics are affected by the buoyancy force. Three dimensional elliptical governing equations have been discretized using the finite volume approach(FVM)using SIMPELC algorithm to investigate fluid flow throughout of an annulus duct Numerical simulations have been carried out for the nanoparticle volume fraction((o)= 0.02)and various mean diameters of nanopartides(d_p)between 13 and 72 nm and different values of the Grashof and Reynolds numbers. The calculated results demonstrate that Nusselt number decreases with increasing nanoparticle mean diameter while it does not influence significantly the hydrodynamic parameters. Also this results show that nanoparticle distribution at the annuluses cross section is non-uniformity.
机译:本文研究了具有恒定热通量边界条件的水平同心环空中纳米流体(Al_2O_3-水)的层流混合对流。研究了两个热边界条件,其中一个条件是在内壁处有均匀的热通量,另一个壁处是绝热的,而另一个内壁和外壁以相同的热通量加热。采用两相混合模型研究纳米颗粒平均直径对流体力学和热学特性的影响。除体力密度随温度线性变化外,其他流体流动特性均假定为常数(Boussinesq假设),因此流体流动特性受浮力的影响。使用SIMPELC算法使用有限体积法(FVM)离散化了三维椭圆控制方程,以研究整个环形管道内的流体流动。对纳米颗粒体积分数((o)= 0.02)和各种平均直径进行了数值模拟在13和72 nm之间的纳米粒子(d_p)以及不同的Grashof和雷诺数值。计算结果表明,Nusselt数随纳米颗粒平均直径的增加而减小,而对流体力学参数没有明显影响。该结果还表明,在环形截面处的纳米颗粒分布是不均匀的。

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