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《CIESC Journal》 2019-01
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Evaluation research on boiling heat transfer model of CO_2 in tube

LIU Zhongyan;SUN Dahan;JIN Xu;WANG Tianhao;MA Yitai;School of Energy and Power Engineering, Northeast Electric Power University;School of Mechanical Engineering, Tianjin University;  
Due to good environmental characteristics and excellent thermodynamic properties, CO_2 is considered as an ideal alternative refrigerant. Compared with the traditional refrigerant, CO_2 flow boiling heat transfer characteristics is very different. However, the existing heat transfer correlations are based on their respective test data fitting, because the data points are too less and the range of variable parameters is limited, the predicted results are very different. To establish the CO_2 tube flow boiling heat transfer in a more comprehensive database, compare and analyze different heat transfer models, it is of great significance for deep understanding of the boiling heattransfer characteristics of CO_2 in tube and study more accurate heat transfer correlation. There are six correlations analyzed by using 4040 experimental data points of CO_2 flow boiling heat transfer from 24 references, the studyfound that for Fang(2013) correlation minimum error is 10.6%, and draw the variation of gas and liquid Reynoldsnumber with pipe diameter, and the change of gas and liquid Reynolds number scatter plot and the plot of Nusseltnumber change with Bond number, it can provide insight into the CO_2 tube flow boiling heat transfer characteristics and the future research a new type of heat transfer correlations for more accurate to provide the reference.
【Fund】: 吉林市科技发展创新项目(201750214);; 东北电力大学博士启动基金项目(BSJXM-201507);; 吉林省重点科技研发项目(20180201006SF)
【CateGory Index】: TB61
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