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ZHAO C Y, LU W, TASSOU S A. Thermal analysis on metal-foam filled heat exchangers(Ⅱ): Tube heat exchangers[J]. International Journal of Heat and Mass Transfer, 2006, 49(15): 2762-2770.
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LIU L, JACOBI A M. The effects of hydrophilicity on water drainage and condensate retention on air-conditioning evaporators[C]// International Refrigeration and Air conditioning Conference at Purdue, 2006: paper R847.
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JOARDAR A, GU P Z. X. Assessing the condensate-drainage behavior of dehumidifying heat exchangers[C]//International Refrigeration and Air conditioning Conference at Purdue, 2004: paper R629.
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ZHONG Y F, JOARDAR A, GU Z P, et al. Dynamic dip testing as a method to assess the condensate drainage behavior for the air-side surface of compact heat exchangers[J]. Experimental Thermal and Fluid Science, 2005, 29: 957-70.
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WANG C C, FU W L, CHANG C T. Heat transfer and friction characteristics of typical wavy fin-and-tube heat exchangers[J]. Experimental Thermal and Fluid Science, 1997, 14(2): 174-186.
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QI Z G. Water retention and drainage on airside of heat exchangers-a review[J]. Renewable and Sustainable Energy Reviews, 2013, 28: 1-10.
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ELSHERBINI A L, JACOBI A M. A model for condensate retention om plain-fin heat exchangers[J]. Journal of Heat Transfer, 2006, 128: 427-433.
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KORTE C, JACOBI A M, Condensate retention effects on the performance of plain-fin-and-tube heat exchangers: retention data and modeling[J] Journal of Heat Transfer, 2001, 123: 926-936.
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CHUAH Y K, HUNG C C, TSENG P C. Experiments on the dehumidification performance of a finned tube heat exchanger[J]. HVAC&R Research, 1998, 4(2): 167-177.
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HAN X, NAWAZ K. Open-cell metal foam for use in dehumidifying heat exchanger[C]//International Refrigeration and Air conditioning Conference at Purdue, 2012: paper 1312.
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[20] |
MOFFAT R J. Describing the uncertainties in experimental results[J]. Experimental Thermal and Fluid Science, 1988, 1(1): 3-17.rds:a literature critique[J]. Forest Products Society, 1985, 35:20-31.
|
[2] |
COLLIER R K. Desiccant properties and their affect on cooling system performance[J]. ASHRAE transactions, 1989, 95(1):823-827
|
[3] |
WAUGAMAN D G, KINI A. A review of desiccant cooling systems.[J]. Journal of Energy Resources Technology,1993,115(1):1-8
|
[4] |
COLLIER RK. Advanced desiccant materials assessment, Final report[R]. Gas Research Institute Report,1986
|
[5] |
ZHAO C Y. Review on thermal transport in high porosity cellular metal foams with open cells[J]. International Journal of Heat and Mass Transfer, 2012, 55(13):3618-3632
|
[6] |
GU Z Z, FUJISHIMA A., SATO O. Biomimetic titanium dioxide film with structural color and extremely stable hydrophilicity[J]. Applied Physics Letters, 2004, 85(21):5066-5069
|
[7] |
翁晓敏, 胡海涛, 庄大伟, 等.湿空气在泡沫金属内析湿过程的换热与压降特性影响因素分析[J]. 化工学报, 2015:1649-1655.DOI:10.11949/j.issn.0438-1157.20141657 WENG X M, HU H T, ZHUANG D W,et al.Analysis of influence factors for heat transfer and pressure drop characteristics of moist air in metal foams during dehumidifying process[J].CIESCE Journal, 2015:1649-1655. DOI:10.11949/j.issn.0438-1157.20141657
|
[8] |
JIANG P X, SI G S, LI M.,et al. Experimental and numerical investigation of forced convection heattransfer of air in non-sintered porous media[J]. Experimental Thermal and Fluid Science, 2004, 28(6):545-555.
|
[9] |
DAS A K, KILTY H P, MARTO P J,et al. The use of an organic self-assembled monolayer coating to promote dropwise condensation of steam on horizontal tubes[J]. Journal of Heat Transfer-Transactions of the ASME, 2000, 122(2):278-286
|
[10] |
ZHAO C Y, LU W, TASSOU S A. Thermal analysis on metal-foam filled heat exchangers. Part Ⅱ:Tube heatexchangers[J]. International Journal of Heat and Mass Transfer, 2006, 49(15):2762-2770.
|
[11] |
LIU L, JACOBI A M. The effects of hydrophilicity on water drainage and condensate retention on air-conditioning evaporators[C]. International Refrigeration and Air conditioning Conference at Purdue,, 2006:paper R847.
|
[12] |
JOARDAR A, GU PZ. X.Assessing the condensate-drainage behavior of dehumidifying heat exchangers[C], International Refrigeration and Air conditioning Conference at Purdue, 2004:paper R629.
|
[13] |
ZHONG YF, JOARDAR A, GU ZP,et al. Dynamic dip testing as a method to assess the condensate drainage behavior for the air-side surface of compact heat exchangers[J]. Experimental Thermal and Fluid Science 2005, 29:957-70.
|
[14] |
WANG C C, FU W L, Chang C T. Heat transfer and friction characteristics of typical wavy fin-and-tube heat exchangers[J]. Experimental Thermal and Fluid Science, 1997, 14(2):174-186
|
[15] |
QI Z G. Water retention and drainage on airside of heat exchangers-A review[J]. Renewable and Sustainable Energy Reviews 28(2013)1-10
|
[16] |
ELSHERBINI A L, JACOBI A M.A model for condensate retention om plain-fin heat exchangers[J]Journal of heat transfer,2006128(427-433)
|
[17] |
KORTE C, JACOBI A M,Condensate retention effects on the performance of plain-fin-and-tube heat exchangers:retention data and modeling[J]Journal of heat transfer,2001123(926-936)
|
[18] |
CHUAH YK, HUNG C C, TSENG P C. Experiments on the dehumidification performance of a finned tube heat exchanger[J]. HVAC & R Research, 1998, 4(2):167-177
|
[19] |
HAN X, NAWAZ K. Open-cell metal foam for use in dehumidifying heat exchanger[C]. International Refrigeration and Air conditioning Conference at Purdue,2012:paper 1312.
|
[20] |
MOFFAT R J. Describing the uncertainties in experimental results[J]. Experimental thermal and fluid science, 1988, 1(1):3-17.
|