首页> 外文会议>4th International Conference on Nanochannels, Microchannels and Minichannels 2006(ICNMM2006) pt.B >DEFORMATION AND OSCILLATIONS OF A SINGLE GAS BUBBLE RISING IN A NARROW VERTICAL TUBE
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DEFORMATION AND OSCILLATIONS OF A SINGLE GAS BUBBLE RISING IN A NARROW VERTICAL TUBE

机译:单个垂直管中单个气体冒泡的变形和振动

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A single gas bubble rising in a narrow vertical tube is investigated via a numerical model on a 3-D axisymmetric computational domain. The transient governing equations are solved by a finite volume scheme with a two-step projection method. The interface between the liquid and gas phase is tracked by a coupled level set and volume-of-fluid (CLSVOF) method. A surface tension modeling method, which preserves the jump discontinuity of pressure at the interface, is employed. The flow structure and terminal velocity obtained in the numerical simulation are in excellent agreement with experimental measurements. Special attention is paid to the bubble oscillations during the initial stage of ascent. It has been found that the bubble bottom undergoes severe oscillations while the nose maintains a stable shape. A parametric study is performed to identify the factors controlling the oscillations at the bubble bottom.
机译:通过在3-D轴对称计算域上的数值模型研究了在狭窄的垂直管中上升的单个气泡。用两步投影法通过有限体积法求解瞬态控制方程。液相和气相之间的界面通过液位和液量耦合(CLSVOF)方法进行跟踪。使用了一种表面张力建模方法,该方法可以保留界面处压力的跳跃不连续性。在数值模拟中获得的流动结构和最终速度与实验测量结果非常吻合。要特别注意上升初期的气泡振荡。已经发现,气泡底部经受剧烈的振动,而鼻子保持稳定的形状。进行参数研究以识别控制气泡底部振荡的因素。

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