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首页> 外文期刊>European Physical Journal Plus >Electrohydrodynamic nanofluid flow and forced convective heat transfer in a channel
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Electrohydrodynamic nanofluid flow and forced convective heat transfer in a channel

机译:电液动力学纳米流体流动和强制对流热传递在通道中

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In this study the effect of an electric field on Fe3O4-water nanofluid flow and heat transfer in a channel is studied. Two electrode plates are embedded in the bottom of the channel. The finite-volume method is used to simulate this problem. The effective thermal conductivity and viscosity of the nanofluid are calculated using the Maxwell-Garnetts (MG) and Brinkman models, respectively. The effects of the Reynolds number and voltage supply on hydrothermal behavior have been examined. The results show that the Nusselt number has direct relationship with the Reynolds number and voltage supply. The effect of the electric field on the rate of heat transfer is more sensible for low Reynolds number.
机译:在该研究中,研究了电场对Fe3O4-水纳米流体流和在通道中的热传递的影响。 两个电极板嵌入通道的底部。 有限卷方法用于模拟此问题。 使用Maxwell-Garnetts(MG)和Brinkman模型分别计算纳米流体的有效导热率和粘度。 研究了雷诺数和电压供应对水热行为的影响。 结果表明,纽带数与雷诺数和电压电源有直接关系。 电场对热传递速率的影响对于低雷诺数更明智。

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