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Turbulent Bubble-Laden Channel Flow of Power-Law Fluids: A Direct Numerical Simulation Study

机译:动力法流体湍流泡沫流动:直接数值模拟研究

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The influence of non-Newtonian fluid behavior on the flow statistics of turbulent bubble-laden downflow in a vertical channel is investigated. A Direct Numerical Simulation (DNS) study is conducted for power-law fluids with power-law indexes of 0.7 (shear-thinning), 1 (Newtonian) and 1.3 (shear-thickening) in the liquid phase at a gas volume fraction of 6%. The flow is driven downward by a constant volumetric flow rate corresponding to a friction Reynolds number of Reτ≈127.3. The E?tv?s number is varied between Eo=0.3125 and Eo=3.75 in order to investigate the influence of quasi-spherical as well as wobbling bubbles and thus the interplay of the bubble deformability with the power-law behavior of the liquid bulk. The resulting first- and second-order fluid statistics, i.e., the gas fraction, mean velocity and velocity fluctuation profiles across the channel, show clear trends in reply to varying power-law indexes. In addition, it was observed that the bubble oscillations increase with decreasing power-law index. In the channel core, the bubbles significantly increase the dissipation rate, which, in contrast to its behavior at the wall, shows similar orders of magnitude for all power-law indexes.
机译:研究了非牛顿流体行为对垂直通道中湍流气泡升起下流流出的流动统计的影响。在液相中,在6的气相中的电力 - 法液的电力 - 法液进行直接数值模拟(DNS)研究。 %。通过对应于摩擦雷诺数的摩擦雷诺数的恒定体积流量向下驱动流程。 e?电视的eo = 0.3125和eo = 3.75之间的变化,以研究准球形以及摆动气泡的影响,从而与液体散装的动力 - 法律行为的相互作用相互作用。由此产生的第一和二阶流体统计,即气体分数,平均速度,平均速度和速度波动谱,显示出对不同幂律指标的回答的明显趋势。此外,观察到气泡振荡随着幂律指数的降低而增加。在通道核心中,气泡显着提高了耗散速率,与其在墙上的行为相反,显示所有电力法指标的相似级。

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