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CaCl2溶液去湿型空调系统研究 被引量:2

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出处 《低温工程》 CAS CSCD 1991年第1期72-76,共5页 Cryogenics
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  • 1赵云,施明恒.太阳能液体除湿空调系统中除湿剂的选择[J].工程热物理学报,2001,22(S1):165-168. 被引量:26
  • 2张村,施明恒.对流边界条件下竖板降膜除湿过程中传热传质的数值模拟[J].制冷与空调,2004,4(4):21-25. 被引量:5
  • 3刘晓华,江亿,常晓敏,易晓勤.溶液除湿空调系统中叉流再生装置热质交换性能分析[J].暖通空调,2005,35(12):10-15. 被引量:15
  • 4W.Y.Saman, S.Alizadeh, Modeling and performance analysis of across-flow type plate heat exchanger for dehumidification/cooling[J].Solar Energy,2000,(7):63 -70.
  • 5W.Y.Samart, S.Alizadeh, An Experimental study of a cross-flow type Plate heat exchanger for dehumidification/cooling[J] Solar Energy,2001,73(1):59-71.
  • 6S.Allizadeh,W.Y.Saman. Modeling and performance of a forced-flow solar collector/regenerator using liquid desiccant[J]. Solar Energy,2002,72(2): 143 - 154.
  • 7Fumo N,Goswami D Y. Study of an aqueous lithium chloride desiccant system: air dehumidification and desiccant regeneration[J].Solar Energy,2002,72(4):351 -361.
  • 8G.O.G.Ltif, Cooling with solar energy, Congress on Solar Energy,1955.
  • 9G.O.G.Lof, Cooling with solar energy, Congress on solar energy, Tuscon,Arizona,1995:171-189.
  • 10F.N.Ani,E.M.Badawi,K.S.Kannan. The effect of absorber packing height on the performance of a hybrid liquid desiccant system[J].Renewable Energy,2005:2247-2256.

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