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Analysis of bubble growth and motion dynamics in superheated liquid during flash evaporation

机译:闪蒸蒸发过程中过热液体泡沫生长和运动动力学分析

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This study proposes a mathematical model for studying the growth and rise of a bubble in a superheated liquid during flash evaporation. The motion of the bubble is simulated based on force balance by considering various forces acting on the bubble, especially including the history force and the pressure force from a decreasing pressure field. The transformation of the rising bubble and its effect on interfacial heat and mass transfer are considered. Using this model, bubble growth and motion characteristics in the superheated liquid are analyzed in detail, and the effects of history and depressur-ization forces on both bubble motion and growth are examined. The results present a strong coupling of bubble growth with motion. A slow rise velocity of bubble at the late transition stage can significantly promote bubble growth, and the bubble growth even contributes more to the deceleration of bubble rise compared with the drag force. The history force is found insignificant for bubble rise and growth if the bubble has a relatively high growth rate in water at a superheated degree greater than 3.9 K in this study. The additional force from rapid depressurization provides a large pulse acceleration on the bubble. However, the bubble rise and growth are only sensitive to the depressurization rate for slow depressurizations. As the depressurization rate increases, the growth and rise curves of the bubble gradually converge to the case of instantaneous depressurization. In addition, the bubble rise velocity is lower for a higher overall pressure drop owing to a higher bubble growth rate. The proposed model is finally extended to simulate bubble growth and rise in superheated NaCl solution by revising the thermodynamic conditions at the bubble/solution interface based on the two-characteristic-parameter correlation model.
机译:本研究提出了一种用于在闪蒸蒸发过程中研究过热液体中泡沫生长和升高的数学模型。通过考虑作用在气泡的各种力,特别是包括来自减小的压力场的历史力和压力,基于力平衡来模拟气泡的运动。考虑了上升气泡的转化及其对界面热量和传质的影响。使用该模型,详细分析过热液体中的气泡生长和运动特性,研究了历史和减压力对泡沫运动和生长的影响。结果呈现出泡沫生长的强烈偶联。晚期过渡阶段的泡沫缓慢上升速度可以显着促进气泡生长,并且与拖曳力相比,气泡生长甚至有助于泡沫升高的减速。如果泡沫在本研究中的过热程度大于3.9k的水中的水中的水中具有相对高的生长速率,则发现历史力量微不足道。来自快速减压的额外力在气泡上提供了大的脉冲加速度。然而,泡沫升高和生长对缓慢减压的减压率仅敏感。随着减压速率的增加,气泡的生长和上升曲线逐渐收敛到瞬时减压的情况下。此外,由于较高的气泡生长速率,气泡上升速度较高,对于更高的气泡生长率。该拟议模型最终通过基于双特征参数相关模型修改气泡/溶液界面的热力学条件来模拟泡沫生长和超热NaCl溶液的升高。

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