globalchange  > 气候变化事实与影响
CSCD记录号: CSCD:6185581
论文题名:
水平管内非共沸混合物R50/R170两相流摩擦压降实验
其他题名: Experimental investigation on two-phase frictional pressure drop of zeotropic mixtures of R50/R170 in a horizontal tube
作者: 庄晓如1; 陈高飞2; 宋庆路1; 汤奇雄1; 杨志强1; 邹鑫2; 公茂琼1
刊名: 科学通报
ISSN: 0023-074X
出版年: 2018
卷: 63, 期:4, 页码:601-609
语种: 中文
中文关键词: 摩擦压降 ; 非共沸混合物 ; 两相流 ; 水平管
英文关键词: R50/R170 ; frictional pressure drop ; zeotropic mixture ; R50/R170 ; two-phase flow ; horizontal tube
WOS学科分类: ENGINEERING INDUSTRIAL
WOS研究方向: Engineering
中文摘要: 开展了非共沸混合物R50/R170在管内径为4 mm的水平管内两相流摩擦压降实验研究.实验测量的压力范围为1.5~2.5 MPa,质量流率范围为99~255 kg m~(-2) s~(-1),干度范围为0~0.9, R50/R170混合物的初始浓度组分比(摩尔分数)分别为0.27:0.73, 0.54:0.46和0.7:0.3.分析了质量流率、饱和压力、干度和浓度组分对摩擦压降的影响,结果表明浓度组分对摩擦压降的影响主要是由气相密度差异造成的.将所获得的实验数据与20个经典两相流摩擦压降关联式进行对比分析,得到Friedel的关联式对本实验数据预测最好,其平均绝对相对偏差为19.26%,且有87.45%的数据点在30%的平均相对偏差范围内.
英文摘要: In recent years, due to the environmental issues, suitable substitutes are being searched to replace the traditional chlorinated refrigerants. With zero ozone depleting potential, low global warming potential and high thermodynamic performance, the hydrocarbons are suitable selections in refrigerators and heat pump systems. As hydrocarbons, R50 and R170 are also the important parts of the natural gas and often-used components in mixture refrigerants for the low-temperature Joule-Thomson refrigerator. As the flow characteristics play important parts in the design and optimization of the heat exchangers in refrigerators and air-conditioning systems, the two-phase frictional pressure drop should be well examined and analyzed. Although there are massive experimental studies on two-phase frictional pressure drop of hydrocarbons in horizontal tubes, the published experimental investigations for zeotropic mixtures of R50/R170 are rare. Therefore, it's desirable to conduct an experimental investigation on two-phase frictional pressure drop of zeotropic mixtures of R50/R170 in a horizontal tube and find a suitable correlation. In this paper, two-phase frictional pressure drop of R50/R170 mixtures (0.27:0.73, 0.54:0.46 and 0.7:0.3 by mole) was studied experimentally in a horizontal tube with inner diameter of 4 mm. The tests were carried out at saturation pressures from 1.5 MPa to 2.5 MPa for mass fluxes from 99 kg m~(-2) s~(-1) to 255 kg m~(-2) s~(-1), vapor qualities from 0 to 0.9. The uncertainty for the pressure drop was 40 Pa and the uncertainties for the vapor quality with a 95% confidence interval were less than 11.74% under the employed operation conditions. The effects of mass flux, saturation pressure, vapor quality and concentration on two-phase frictional pressure drop were examined and analyzed. Some conclusions can be drawn that (1) the frictional pressure drops increase with the increasing mass flux and the impact becomes more obvious when the vapor quality increases; (2) the frictional pressure drops decrease with the increasing saturation pressure and the impact enhances when the vapor quality increases; (3) the frictional pressure drops increase with the increasing vapor quality and then change to be smooth even decline at high vapor qualities. And the effect of vapor quality enhances as the mass flux increases and the saturation pressure decreases; (4) the frictional pressure drops of pure R50 are lower than that of all R50/R170 mixtures and the frictional pressure drops of the initial concentration of R50/R170 mixtures at 0.27:0.73 are also lower than that of other two initial concentrations of R50/R170 mixtures. Their differences are not obvious at low vapor qualities, while the differences enhance when the mass flux and vapor quality increase as well as the saturation pressure decreases. The influence of concentration may be mainly related to the difference of the vapor densities. In addition, the experimental data were compared with twenty well-known frictional pressure drops correlations. The comparison results showed that the Friedel correlation showed the best agreement with a mean absolute relative deviation of 19.26% and 87.45% of points in the deviation bandwidth of 30%.
资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/154355
Appears in Collections:气候变化事实与影响

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作者单位: 1.中国科学院理化技术研究所
2.中国科学院大学未来技术学院, 中国科学院低温工程学重点实验室
3.,
4., 北京
5.北京 100190
6.100049, 中国
7.中国科学院理化技术研究所, 中国科学院低温工程学重点实验室, 北京 100190, 中国

Recommended Citation:
庄晓如,陈高飞,宋庆路,等. 水平管内非共沸混合物R50/R170两相流摩擦压降实验[J]. 科学通报,2018-01-01,63(4):601-609
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