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Downstream pressure and elastic wall reflection of droplet flow in a T-junction microchannel 被引量:1

Downstream pressure and elastic wall reflection of droplet flow in a T-junction microchannel
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摘要 This paper discusses pressure variation on a wall during the process of liquid flow and droplet formation in a T-junction microchannel. Relevant pressure in the channel, deformation of the elastic wall, and responses of the droplet generation are analyzed using a numerical method.The pressure difference between the continuous and dispersed phases can indicate the droplet-generation period. The pressure along the channel of the droplet flow is affected by the position of droplets, droplet-generation period, and droplet escape from the outlet. The varying pressures along the channel cause a nonuniform deformation of the wall when they are elastic. The deformation is a vibration and has the same period as the droplet generation arising from the process of droplet formation. This paper discusses pressure variation on a wall during the process of liquid flow and droplet formation in a T-junction microchannel. Relevant pressure in the channel, deformation of the elastic wall, and responses of the droplet generation are analyzed using a numerical method.The pressure difference between the continuous and dispersed phases can indicate the droplet-generation period. The pressure along the channel of the droplet flow is affected by the position of droplets, droplet-generation period, and droplet escape from the outlet. The varying pressures along the channel cause a nonuniform deformation of the wall when they are elastic. The deformation is a vibration and has the same period as the droplet generation arising from the process of droplet formation.
出处 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2016年第4期579-587,共9页 力学学报(英文版)
基金 supported by the National Natural Science Foundation of China(Grants 11072011 and 11572013) the Doctoral Fund of Innovation of the Beijing University of Technology
关键词 droplet junction dispersed outlet surfactant reaches nonuniform length magnitude downstream droplet junction dispersed outlet surfactant reaches nonuniform length magnitude downstream
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