首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >THREE-DIMENSIONAL NUMERICAL ANALYSIS OF HORIZONTAL AND VERTICAL COALESCENCE OF BUBBLES AT TWO SUBMERGED HORIZONTAL ORIFICES ON THE WALL
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THREE-DIMENSIONAL NUMERICAL ANALYSIS OF HORIZONTAL AND VERTICAL COALESCENCE OF BUBBLES AT TWO SUBMERGED HORIZONTAL ORIFICES ON THE WALL

机译:壁上两个淹没水平孔的气泡水平和垂直重度的三维数值分析

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In the process of bubbling from two submerged adjacent orifices, bubbles coalescence becomes inevitable. But the study of the evolution and interaction of bubbles from submerged orifices is little, especially numerical simulation. In this paper, combined with mesh smoothing technique, mesh subdivision technique and the technique of axisymmetric coalescence and 3D coalescence, a three-dimensional model of bubbles coalescence at two submerged adjacent orifices on the wall is established by the boundary element method. Then, numerical simulations were carried out for horizontal and vertical coalescence before detachment. Finally, by changing the ventilation rate and the Froude number, the effects of different ventilation rates and buoyancy on the process of bubbles coalescence at two adjacent orifices were investigated. The results show that for horizontal coalescence, the effect of ventilation rate is more pronounced than buoyancy. As the ventilation rate increases or the influence of buoyancy is decreased, the amplitude of internal pressure fluctuation of the bubble decreases and the coalescence time decreases. For vertical coalescence, the effect of buoyancy is more pronounced than ventilation rate. With the influence of buoyancy is decreased, the vertical coalescence time is increased, the internal pressure of the bubble is decreased. The influence of ventilation rate is similar to that of horizontal coalescence.
机译:在从两个浸没的相邻孔口起泡的过程中,气泡聚结变得不可避免。但是,对浸没孔中气泡的演化和相互作用的研究很少,尤其是数值模拟。本文结合网格平滑技术,网格细分技术以及轴对称合并和3D合并技术,通过边界元方法建立了壁上两个浸没相邻孔口气泡合并的三维模型。然后,对分离之前的水平和垂直合并进行了数值模拟。最后,通过改变通风速率和弗洛德数,研究了不同通风速率和浮力对两个相邻孔口气泡聚结过程的影响。结果表明,对于水平合并,通风速率的影响比浮力更为明显。随着通风速率的增加或浮力的影响减小,气泡的内部压力波动幅度减小,并且聚结时间减小。对于垂直合并,浮力的影响比通风速率更明显。随着浮力的影响减小,垂直聚结时间增加,气泡的内部压力减小。通风速率的影响与水平合并的影响相似。

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