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首页> 外文期刊>Journal of magnetism and magnetic materials >Effect of an alternating nonuniform magnetic field on ferrofluid flow and heat transfer in a channel
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Effect of an alternating nonuniform magnetic field on ferrofluid flow and heat transfer in a channel

机译:交变非均匀磁场对通道中铁磁流体流动和传热的影响

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Forced convective heat transfer of water based Fe_3O_4 nanofluid (ferrofluid) in the presence of an alternating non-uniform magnetic field is investigated numerically. The geometry is a two-dimensional channel which is subjected to a uniform heat flux at the top and bottom surfaces. Nonuniform magnetic field produced by eight line source dipoles is imposed on several parts of the channel. Also, a rectangular wave function is applied to the dipoles in order to turn them on and off alternatingly. The effects of the alternating magnetic field strength and frequency on the convective heat transfer are investigated for four different Reynolds numbers (Re =100, 600, 1200 and 2000) in the laminar flow regime. Comparing the results with zero magnetic field case, show that the heat transfer enhancement increases with the Reynolds number and reaches a maximum of 13.9% at Re=2000 and f=20Hz. Moreover, at a constant Reynolds number, it increases with the magnetic field intensity while an optimum value exists for the frequency. Also, the optimum frequency increases with the Reynolds number. On the other hand, the heat transfer enhancement due to the magnetic field is always accompanied by a pressure drop penalty. A maximum pressure drop increase of 6% is observed at Re=2000 and f=5 Hz which shows that the pressure drop increase is not as significant as the heat transfer enhancement.
机译:数值研究了交替非均匀磁场存在下水基Fe_3O_4纳米流体(铁磁流体)的强迫对流换热。几何形状是二维通道,在顶部和底部表面受到均匀的热通量。由八个线源偶极子产生的不均匀磁场会施加在通道的多个部分上。而且,矩形波函数被应用于偶极子以便交替地打开和关闭它们。对于层流状态下的四个不同雷诺数(Re = 100、600、1200和2000),研究了交变磁场强度和频率对对流换热的影响。将结果与零磁场情况进行比较,结果表明,传热增强随雷诺数的增加而增加,在Re = 2000和f = 20Hz时最大达到13.9%。此外,在恒定的雷诺数下,它随磁场强度而增加,而频率存在最佳值。而且,最佳频率随着雷诺数增加。另一方面,由于磁场引起的热传递增强总是伴随着压降损失。在Re = 2000和f = 5Hz时观察到最大压降增加6%,这表明压降增加不如传热增强明显。

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