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首页> 外文期刊>Journal of Fluid Mechanics >Stationary d.c. streaming due to shape oscillations of a droplet and its effect on mass transfer in liquid-liquid systems
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Stationary d.c. streaming due to shape oscillations of a droplet and its effect on mass transfer in liquid-liquid systems

机译:固定式直流电液滴形状振荡引起的流体流及其对液-液体系中传质的影响

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The work is devoted to stationary streaming flows resulting from standing capillary waves at interfaces between two immiscible liquids and their effect on the mass transfer rate of a passive scalar. In particular, oscillating liquid droplets immersed in another immiscible liquid are considered. Secondary streaming flows in the Stokes layers near the interface are calculated, as well as the corresponding vortical flows arising in the bulk. It is shown that the vortices can drastically enhance the mass transfer rate of a passive scalar which is to be extracted by one liquid from the other. The corresponding Sherwood number is of the order of [u(int)/D-1](1/2), where u(int) is the magnitude of the interfacial streaming velocity, a is the droplet radius, and D-1 is the diffusion coefficient in liquid I (inside the droplet). This means that the effective diffusion coefficient is of the order of D-1[u(int)/D-1](1/2), which is two orders of magnitude higher than D-1. The results obtained show that such flows can be of potential interest for novel bioseparator devices. [References: 33]
机译:这项工作致力于由两种不混溶液体之间的界面处的毛细波驻扎产生的平稳流及其对无源标量传质速率的影响。特别地,考虑了浸没在另一种不混溶的液体中的振荡液滴。计算界面附近的斯托克斯层中的次要流以及散装中相应的涡流。结果表明,涡旋可以显着提高被动标量的传质速率,该被动标量将由一种液体从另一种液体中提取出来。相应的舍伍德数约为[ u(int) a / D-1](1/2),其中 u(int)是界面流速度的大小,a是液滴半径, D-1是液体I(液滴内部)的扩散系数。这意味着有效扩散系数约为D-1 [ u(int) a / D-1](1/2),比D-1高两个数量级。获得的结果表明,这种流动对于新型生物分离器装置可能具有潜在的意义。 [参考:33]

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