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首页> 外文期刊>International Journal of Heat and Mass Transfer >Mechanistic study for the interfacial area transport phenomena in an air/water flow condition by using fine-size bubble group model
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Mechanistic study for the interfacial area transport phenomena in an air/water flow condition by using fine-size bubble group model

机译:利用细小气泡群模型研究空气/水流动条件下界面区域传输现象的机理

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摘要

A set of number density transport equations based on the bubble size are used to predict the void fraction and the interfacial area concentration in an air/water flow conditions. As the closure relations for the number density transport equations, a coalescence due to random collisions and a breakup due to an impact of the turbulent eddies are modified based on previous studies. The bubble expansion term due to a pressure reduction and a coalescence due to a wake entrainment are modeled for the number density transport equation. In order to predict the local experimental data, a computational fluid dynamic (CFD) code coupling the two-fluid model and number density transport equations are developed in this study. As for the results of the numerical analysis, the developed model predicts well the void fraction and interfacial area concentration although some deviations between the prediction and the experiment are shown for the high void fraction conditions.
机译:一组基于气泡大小的数密度传输方程式用于预测空气/水流条件下的空隙率和界面面积浓度。作为数密度输运方程的闭合关系,基于先前的研究,对由于随机碰撞而引起的合并和由于湍流涡流的影响而引起的破裂进行了修改。为数密度传输方程建模了由于压力降低引起的气泡膨胀项和由于尾流夹带引起的聚结。为了预测局部实验数据,在本研究中开发了耦合双流体模型和数密度传输方程的计算流体动力学(CFD)代码。至于数值分析的结果,尽管在高孔隙率条件下显示了预测值与实验之间的一些偏差,但开发的模型可以很好地预测孔隙率和界面面积浓度。

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