Research on pressure drop characteristics of CO2 flow boiling based on flow pattern in horizontal Minichannel

被引:0
作者
Zhang Liang
Jiang Linlin
Liu Jianhua
Yuan Yunxiao
Zhang Jiawen
机构
[1] University of Shanghai for Science and Technology,Refrigeration Technology Institute
[2] Nantong Vocational University,undefined
来源
Heat and Mass Transfer | 2020年 / 56卷
关键词
CO; Minichannel; Flow boiling; Frictional pressure drop; Flow pattern;
D O I
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中图分类号
学科分类号
摘要
The experimental study of the frictional pressure drop characteristics of flow boiling heat transfer of CO2 in a horizontal minichannel with an inner diameter of Φ1.5 mm was carried out. Experimental conditions: heat flux (7.5 ~ 30 kW•m−2), mass flow rate (50 ~ 600 kg•m−2•s−1), saturation temperature (−40 ~ 0 °C), vapor quality (0 ~ 1). The comparison between the experimental results and theoretical flow pattern diagrams shows that the change of heat flux has little effect on the frictional pressure drop at high vapor quality area, but it has a decisive effect on the dryout and mist flow areas. The mass flow rate is the most important factor affecting the frictional pressure drop which has a decisive effect on the flow pattern experienced during the heat transfer process. The saturation temperature has an important influence on the flow pattern transition characteristics and the friction pressure drop decreases with the increase of saturation temperature. The influence of vapor quality on the frictional pressure drop is mainly caused by the flow pattern change in the minichannel. The flow visualization study shows that the theoretical flow pattern diagram can better reflect the flow pattern of CO2 in the phase-change heat transfer process and the transition trend of flow pattern under different working conditions.
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页码:2939 / 2952
页数:13
相关论文
共 37 条
[1]  
Cheng LX(2009)Cooling of microprocessors using flow boiling of CO Appl Therm Eng 11 2426-2432
[2]  
Thome JR(2004) in a micro-evaporator: preliminary analysis and performance comparison Exp Thermal Fluid Sci 28 111-121
[3]  
Pettersen J(2003)Flow vaporization of CO ASHRAE Trans 109 523-532
[4]  
Pettersen J(2008) in microtube tubes Int J Refrig 8 1375-1383
[5]  
Pamitran AS(2004)Two-phase flow pattern, heat transfer, and pressure drop in microchannel vaporization of CO Microscale Thermophysical Engineering 3 259-270
[6]  
Choi KI(2000)Two-phase pressure drop during CO ASHRAE Trans 106 437-445
[7]  
Oh JT(2011) vaporization in horizontal smooth mini-channels Appl Therm Eng 2 163-172
[8]  
Yun R(2011)Two-phase pressure drop of CO Int J Heat Mass Transf 9 2154-2162
[9]  
Kim YC(2011) in mini tubes and micro-channels Exp Thermal Fluid Sci 4 81-596
[10]  
Zhao Y(2005)Flow boiling of CO J Eng Thermophys 5 823-825