郑楠  (副教授)

博士生导师 硕士生导师

电子邮箱:

所在单位:化学工程与技术学院

办公地点:创新港19号楼2179室

学位:博士

所属院系:化学工程与技术学院

   

论文成果

当前位置: 中文主页 >> 科学研究 >> 论文成果

Experimental research on liquid-vapor two-phase flow separation of zeotropic mixtures at an impacting T-junction

点击次数:

发布时间:2025-04-30

发布时间:2025-04-30

论文名称:Experimental research on liquid-vapor two-phase flow separation of zeotropic mixtures at an impacting T-junction

发表刊物:Experimental Thermal and Fluid Science

摘要:Impacting T-junctions could work as a partial vapor-liquid separators by enhancing the mal-distribution of phase that occurs naturally therein. Previous studies have mainly concerned the phase splitting of air-water and pure refrigerants but here the performance of a vertical impacting T-junction using zeotropic mixtures as test fluids is reported. Experiments were conducted to investigate the effect of parameters, including inlet mass velocity, vapor quality, splitting ratio, outlet branch diameter and circulating composition of mixtures, on the liquid separation efficiency, based on mixtures R134a/R245fa and R290/R600a. The inlet flow patterns of each test fluid were also identified by using a high-speed camera under various test conditions. It was found that the mixture composition had an obvious effect on phase splitting at high separation loads, but the separation efficiency would not change linearly versus the R134a mass fraction in mixture R134a/R245fa. Overall, pure refrigerant showed better separation performance than zeotropic mixtures, under the same inlet and outlet conditions. Besides, the vaporization due to pressure drop at T-junction was also discussed by conducting a comparison study between air-water mixture and organic fluids. Calculation results indicated that an increase in pressure drop would promote mass transfer from liquid to vapor phase at the impacting T-junction.

合写作者:Zheng, N., Zhao, L., Wei, J.

卷号:89

页面范围:140-152

是否译文:

发表时间:2017-12-01

上一条: Analysis of a solar Rankine cycle powered refrigerator with zeotropic mixtures

下一条: 有机工质在竖直撞击T 形管内相分离实验研究