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Role of centrifugal force on solid-liquid two-phase flow through rotating channel

机译:离心力对固液两相流通过旋转通道的作用

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The work reveals an interesting and contra-intuitive observation in numerically simulating the solid-liquid flow field through a straight rotating channel. A previous study (Gupta and Pagalthivarthi, 2007) showed that at moderate rotation rates, increase in rotational speed results in an asymmetric velocity profile, because the Coriolis acceleration tends to increase the level of turbulence on the pressure-side and decrease on the suction-side. The present work contra-intuitively shows that higher rotation rates enhance centrifugal acceleration that pushes the velocity maxima towards the pressure-side of the channel. Centrifugal acceleration is also seen to play a prominent role with increase in inlet concentration.
机译:这项工作揭示了通过直线旋转通道对固液流场进行数值模拟的有趣且与直觉相反的观察结果。先前的研究(Gupta和Pagalthivarthi,2007年)表明,在中等转速下,转速增加会导致速度分布不对称,因为科里奥利加速度会增加压力侧的湍流水平,而吸力侧的湍流水平会降低。侧。相反,本工作表明,较高的旋转速度会增强离心加速度,从而将最大速度推向通道的压力侧。随着进口浓度的增加,离心加速度也起着重要作用。

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