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Numerical investigation on turbulence drag reduction by small bubbles in horizontal channel with mixture model combined with population balance model

机译:混合模型与人口平衡模型相结合数值模拟水平通道小气泡减缓湍流阻力

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摘要

The drag reduction by small bubbles is investigated with mixture multiphase flow model combined with population balance model for the horizontal channel turbulence. The influence of liquid-phase Reynolds number and global void fraction on the drag reduction is fully analyzed. The present results show that the addition of small bubbles cause the drag reduction, and the liquid-phase Reynolds number and the global void fraction have the great influence on the drag reduction rate. For the same global void fraction, the larger the liquid-phase Reynolds number is, the sharper the bubble breakup phenomenon is, which leads to that the bubble diameter is smaller and the drag reduction rate is higher. The influence of the global void fraction on the drag reduction rate is related to the liquid-phase Reynolds number. For the low liquid-phase Reynolds number, the case with the lower global void fraction has the higher drag-reducing rate. However, for the high liquid-phase Reynolds number, the higher void fraction corresponds to the larger drag reduction rate. It is very important for investigating the drag reduction by bubbles to consider the bubble coalescence and breakup phenomena. And the present results show that the drag reduction rate strongly depends on the bubble size.
机译:利用混合多相流模型结合总体平衡模型研究小气泡对水平通道湍流的阻力。充分分析了液相雷诺数和整体空隙率对减阻的影响。目前的结果表明,添加小气泡会导致减阻,而液相雷诺数和整体空隙率对减阻率有很大影响。对于相同的整体空隙率,液相雷诺数越大,气泡破裂现象越尖锐,这导致气泡直径更小并且减阻率更高。整体空隙率对减阻率的影响与液相雷诺数有关。对于低液相雷诺数,整体空隙率较低的情况具有较高的减阻率。然而,对于高液相雷诺数,较高的空隙率对应于较大的减阻率。对于研究气泡的减阻作用,考虑气泡的聚结和破裂现象非常重要。目前的结果表明,减阻率很大程度上取决于气泡的大小。

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