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Numerical modeling of dimethyl ether (DME) bubble growth and breakup
作者姓名:ZHANG Peng  ZHANG YuSheng
作者单位:Faculty of Energy and Power Engineering, Huazhong University of Science and Technology, Wuhan 430074, China
基金项目:Supported by the National Natural Science Foundation of China (Grant No. 50676036)
摘    要:A numerical program is written to simulate the process of vapor bubble growth with spherical symmetry from the thermodynamic critical radius in an initially uniformly superheated liquid. The program is validated by the experimental data of superheated water. The calculated results agree with those of experiments well. The program takes into account the variations of properties with temperature precisely to simulate the DME bubble growth under flash boiling conditions. Considering the influences of pressure, surface tension and viscous stress, the linear stability analysis method is adopted to deduce the dispersion equation to represent the disturbance development during the bubble growth, and a new criterion for bubble breakup is established. The results show the bubble becomes more unstable with the increase of bubble Weber number and void fraction, and that with the increase of bubble growth rate or the decrease of initial radius ration of droplet to bubble, the breakup time of bubble becomes shorter.

关 键 词:数值模拟  汽泡生长  二甲基醚  DME  分裂  定性分析方法  过热液体  临界半径
收稿时间:2008-07-11
修稿时间:2008-10-23

Numerical modeling of dimethyl ether (DME) bubble growth and breakup
ZHANG Peng,ZHANG YuSheng.Numerical modeling of dimethyl ether (DME) bubble growth and breakup[J].Chinese Science Bulletin,2009,54(14):2457-2463.
Authors:Peng Zhang  YuSheng Zhang
Institution:(1) Faculty of Energy and Power Engineering, Huazhong University of Science and Technology, Wuhan, 430074, China
Abstract:A numerical program is written to simulate the process of vapor bubble growth with spherical symmetry from the thermodynamic critical radius in an initially uniformly superheated liquid. The program is validated by the experimental data of superheated water. The calculated results agree with those of experiments well. The program takes into account the variations of properties with temperature precisely to simulate the DME bubble growth under flash boiling conditions. Considering the influences of pressure, surface tension and viscous stress, the linear stability analysis method is adopted to deduce the dispersion equation to represent the disturbance development during the bubble growth, and a new criterion for bubble breakup is established. The results show the bubble becomes more unstable with the increase of bubble Weber number and void fraction, and that with the increase of bubble growth rate or the decrease of initial radius ration of droplet to bubble, the breakup time of bubble becomes shorter. Supported by the National Natural Science Foundation of China (Grant No. 50676036)
Keywords:dimethyl ether  flash boiling  bubble growth  instability  bubble breakup
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