首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Effects of nanoparticle migration on force convection of alumina/water nanofluid in a cooled parallel-plate channel
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Effects of nanoparticle migration on force convection of alumina/water nanofluid in a cooled parallel-plate channel

机译:纳米颗粒迁移对冷却的平行平板通道中氧化铝/水纳米流体对流力对流的影响

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摘要

Force convective heat transfer of alumina/water nanofluid inside a cooled parallel-plate channel in the creeping flow regime and the presence of heat generation is investigated theoretically. A modified two-component four-equation non-homogeneous equilibrium model is employed for the alumina/water nanofluid that fully accounts for the effects of nanoparticles volume fraction distribution. To impose the temperature gradients across the channel, the upper wall is subjected to a prescribed wall heat flux while the bottom wall is kept adiabatic. Moreover, due to the nanoparticle migration in the fluid, the no-slip condition of the fluid-solid interface at the walls is abandoned in favor of a slip condition that appropriately represents the non-equilibrium region near the interface. The results indicated that nanoparticles move from the adiabatic wall (nanoparticles depletion) toward the cold wall (nanoparticles accumulation) and construct a non-uniform nanoparticle distribution. Moreover, the anomalous heat transfer rate occurs when the Brownian motion takes control of the nanoparticle migration (smaller nanoparticles).
机译:理论上研究了在蠕变流动状态下,冷却的平行板通道内氧化铝/水纳米流体的强制对流传热和热量的存在。对于氧化铝/水纳米流体,采用改进的两组分四方程非均质平衡模型,该模型充分考虑了纳米颗粒体积分数分布的影响。为了在通道上施加温度梯度,上壁要承受规定的壁热通量,而底壁则要保持绝热。此外,由于纳米颗粒在流体中的迁移,放弃了在壁处的流体-固体界面的无滑动条件,而有利于适当地表示界面附近的非平衡区域的滑动条件。结果表明,纳米颗粒从绝热壁(纳米颗粒耗竭)向冷壁(纳米颗粒积累)移动,并构成了不均匀的纳米颗粒分布。此外,当布朗运动控制纳米颗粒迁移(较小的纳米颗粒)时,发生异常的传热速率。

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