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Ferrofluid Flow and Heat Transfer From a Sphere in the Presence of Nonuniform Magnetic Fields

机译:存在非均匀磁场时铁磁流体的流动和球体的传热

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摘要

In this article, the effects of nonuniform magnetic fields on the hydrodynamics and heat transfer from a heated sphere to its surrounding ferrofluid flow have been investigated. Kelvin body forces originate from the nonuniformity of the applied magnetic field and can generate the vortices behind the sphere leading to a considerable change in the velocity and temperature fields. The applied magnetic field disturbs the thermal boundary layer and decreases heat-transfer resistance, leading to a significant enhancement in the heat-transfer coefficient. Variations of the local and average Nusselt number value (Nu), separation angle, recirculation length, and drag coefficient were considered to investigate the effects of magnetic field intensity, Reynolds number, and the relative magnetic permeability of the sphere. In addition, the arrangement of the coils was optimized to provide the highest heat-transfer rate. Moreover, the obtained results indicate that enhancement in Nuavg is much larger than the drag resistance penalty.
机译:在本文中,研究了非均匀磁场对流体动力学以及从加热球体到周围铁磁流体流的热传递的影响。开尔文体力源自所施加磁场的不均匀性,并可能在球体后面产生涡旋,从而导致速度场和温度场发生重大变化。施加的磁场干扰了热边界层并降低了传热阻力,从而导致传热系数的显着提高。考虑局部和平均努塞尔数(Nu),分离角,再循环长度和阻力系数的变化,以研究磁场强度,雷诺数和球体的相对磁导率的影响。另外,线圈的布置被优化以提供最高的传热速率。此外,获得的结果表明,Nuavg中的增强作用远大于抗阻力损失。

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