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首页> 外文期刊>AIChE Journal >Influence of Unsteady Mass Transfer on Dynamics of Rising and Sinking Droplet in Water: Experimental and CFD Study
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Influence of Unsteady Mass Transfer on Dynamics of Rising and Sinking Droplet in Water: Experimental and CFD Study

机译:非稳态传质对水中上升和下降水滴动力学的影响:实验和CFD研究

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Experimental and numerical investigations were conducted to study the effect of unsteady mass transfer on the dynamics of an organic droplet released in quiescent water. The situation is important and relevant to deep sea oil spill scenario. The droplet contains two components, one is heavier (immiscible) than water and other is lighter (miscible). When released, with an initial mixture density (890-975 kg/m(3)) lower than that of surrounding water, droplet rises in the column. The mass transfer of lighter solute component into water causes the droplet density to increase and droplet sinks when the density exceeds that of water. A mass-transfer correlation accounting for the loss of the solute, based on Reynolds, Grashoff, and Schmidt numbers was developed. A two-dimensional axisymmetric Computational Fluid Dynamics (CFD) model accounting for species transport was developed to emulate the experimental observations. The study also helped in identifying dominant mass-transfer mechanisms during different stages of droplet motion. (c) 2014 American Institute of Chemical Engineers AIChE J, 61: 342-354, 2015
机译:进行了实验和数值研究,以研究不稳定传质对静态水中释放的有机液滴动力学的影响。这种情况很重要,并且与深海漏油情况有关。液滴包含两种成分,一种比水重(不混溶),而另一种则较轻(混溶)。释放后,其初始混合物密度(890-975 kg / m(3))低于周围水的密度,则液滴在色谱柱中上升。较轻的溶质组分向水中的质量转移会导致液滴密度增加,并且当密度超过水密度时,液滴会下沉。建立了基于雷诺数,格拉什霍夫数和施密特数的传质相关性,解释了溶质的损失。建立了一个二维轴对称计算流体动力学(CFD)模型来解释物种的迁移,以模拟实验观察结果。该研究还有助于确定液滴运动不同阶段的主要传质机理。 (c)2014美国化学工程师学会AIChE J,61:342-354,2015

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