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首页> 外文期刊>European Journal of Mechanics, B. Fluids >Steady-state free convection in right-angle porous trapezoidal cavity filled by a nanofluid. Buongiorno's mathematical model
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Steady-state free convection in right-angle porous trapezoidal cavity filled by a nanofluid. Buongiorno's mathematical model

机译:纳米流体填充的直角多孔梯形腔中的稳态自由对流。 Buongiorno的数学模型

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A numerical study of the steady free convection in a right-angle porous trapezoidal cavity filled by a nanofluid using Buongiorno's mathematical model has been performed. The analysis has been done for different values of the governing parameters Nb, Nt, Nr, Le, A and Rayleigh number Ra in the range 50 <= Ra <= 1000 using a finite difference method. It is found that single cell is formed inside the cavity independent of the governing parameters. An addition of the nanoparticles can lead to both an intensification and attenuation of the convective flow and heat transfer in dependence on Nb, Nt, Nr, Le, A and Ra. The results indicate that there exist significant changes in the flow and temperature fields as compared with those of a differentially heated square porous cavity. These results lead, in particular, to the prediction of a position of minimum heat transfer across the cavity, which is of interest in the thermal insulation of buildings and other areas of technology. (C) 2015 Published by Elsevier Masson SAS.
机译:使用Buongiorno数学模型对纳米流体填充的直角多孔梯形腔中的稳态自由对流进行了数值研究。已使用有限差分法对控制参数Nb,Nt,Nr,Le,A和瑞利数Ra在50 <= Ra <= 1000范围内的不同值进行了分析。已经发现,与控制参数无关,在腔体内形成了单电池。取决于Nb,Nt,Nr,Le,A和Ra,添加纳米颗粒可以导致对流和热传递的增强和减弱。结果表明,与差异加热的方形多孔腔相比,流场和温度场存在显着变化。这些结果尤其导致对穿过空腔的最小热传递的位置的预测,这在建筑物和其他技术领域的热绝缘中是有意义的。 (C)2015由Elsevier Masson SAS发布。

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