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An Experimental Study of Carbon Dioxide Condensation in Mini Channels 被引量:2

An Experimental Study of Carbon Dioxide Condensation in Mini Channels
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摘要 In this study, the local characteristics of pressure drop and heat transfer were investigated experimentally for carbon dioxide condensation in a multi-port extruded aluminum test section, which had 10 circular channels each with 1.31 mm inner diameter. The CO2 was cooled with cooling water flow inside the copper blocks that were attached at both sides of the test section. The temperatures at the outer surface of the test section were measured with 24 K-type thermocouples embedded in the upper and lower surfaces along the length. Local heat fluxes were measured with 12 heat flux sensors to estimate the local enthalpies, temperatures and heat transfer coefficients. Bulk mean temperatures of CO2 at the inlet and outlet of the test section were measured with 2 K-type thermocouples. The measurements were performed for the pressure ranged from 6.48 to 7.3 MPa, inlet temperature of CO2 from 21.63 to 31.33℃, heat flux from 1.10 to 8.12 kW/m2, mass velocity from 123.2 to 315.2 kg/m2s, and vapor quality from 0 to 1. The results indicate that pressure drop is very small along the test section, heat transfer coefficient in the two-phase region is higher than that in the single-phase, and mass velocity has important effect on condensation heat transfer characteristics. In addition, experimental data were compared with previous correlations and large discrepancies were observed. In this study, the local characteristics of pressure drop and heat transfer were investigated experimentally for carbon dioxide condensation in a multi-port extruded aluminum test section, which had 10 circular channels each with 1.31 mm inner diameter. The CO2 was cooled with cooling water flow inside the copper blocks that were attached at both sides of the test section. The temperatures at the outer surface of the test section were measured with 24 K-type thermocouples embedded in the upper and lower surfaces along the length. Local heat fluxes were measured with 12 heat flux sensors to estimate the local enthalpies, temperatures and heat transfer coefficients. Bulk mean temperatures of CO2 at the inlet and outlet of the test section were measured with 2 K-type thermocouples. The measurements were performed for the pressure ranged from 6.48 to 7.3 MPa, inlet temperature of CO2 from 21.63 to 31.33°C, heat flux from 1.10 to 8.12 kW/m2, mass velocity from 123.2 to 315.2 kg/m2s, and vapor quality from 0 to 1. The results indicate that pressure drop is very small along the test section, heat transfer coefficient in the two-phase region is higher than that in the single-phase, and mass velocity has important effect on condensation heat transfer characteristics. In addition, experimental data were compared with previous correlations and large discrepancies were observed. Keywords carbon dioxide - condensation - heat transfer - pressure drop - mini channels CLC number TK124
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2004年第4期358-365,共8页 热科学学报(英文版)
关键词 carbon dioxide CONDENSATION heat TRANSFER pressure DROP MINI channels. carbon dioxide condensation heat transfer pressure drop mini channels
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参考文献3

  • 1Koyama,S,Huai,X L,Hidehiko,K,et al.Experimental Investigation of Heat Transfer and Pressure Drop of Supercritical Carbon Dioxide in Multi-port Mini Channels[].International Journal of Heat and Mass Transfer.2004
  • 2Liao,S M,Zhao,T S.An Experimental Investigation of Convection Heat Transfer to Supercritical Carbon Dioxide in Miniature Tubes[].International Journal of Heat and Mass Transfer.2002
  • 3Liao,S M,Zhao,T S.Measurements of Heat Transfer Coefficients from Supercritical Carbon Dioxide Flowing in Horizontal Mini/Macro Channels[].Journal of Heat Transfer.2002

同被引文献18

  • 1李蒙,陈曦,张华.二氧化碳热泵热水器微通道气体冷却器的仿真分析[J].化工学报,2008,59(S2):143-147. 被引量:10
  • 2杨俊兰,马一太,管海清.微通道换热器在CO_2跨临界制冷系统中的应用[J].制冷与空调,2005,5(2):52-56. 被引量:6
  • 3郭蓓,彭学院,邢子文.二氧化碳热泵热水器系统及压缩机的研发现状[J].家电科技,2005(9):42-44. 被引量:21
  • 4ZHAO Yi, OHADI M M. Experimemal study of supercritical CO2 gas cooling in a microchannel gas cooler[J]. ASHRAE Transactions, 2004, 110- 291-300.
  • 5HWANG Ying, JIM D H, RADERMACHER R, et al. Performance measurement of CO2 heat exchangers[J]. ASHRAETransactions, 2005, 111: 306-316.
  • 6FR B M, GARIMELLA S. Water-coupled carbon dioxidemicrochannel gas cooler for heat pump water heaters: Experiments[J]. International Journal of Refrigeration, 2011, 34(1): 7-16.
  • 7PARK C Y, HRNJAK P. Effect of heat conduction through the fins of a microchannel serpentine gas cooler of transcritical CO2 system[J]. International Journal of Refrigeration, 2007, 30(3): 389-397.
  • 8MEHENDALE S S, JACOBI A M, SHAH R K. Fluid flow and heat transfer at micro-and meso-scales with application to heat exchanger design[J]. Applied Mechanics Reviews, 2000, 53: 175.
  • 9BRAUNER N, MARON D M. Identification of the range of 'small diameters' conduits, regarding two-phase flow pattern transitions[J]. International Communications inHeat and Mass Transfer, 1992, 19(1): 29-39.
  • 10KEW P A, CORNWELL K. Correlations for the prediction of boiling heat transfer in small-diameter channels[J]. Applied Thermal Engineering, 1997, 17(8): 705-715.

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