Abstract
References
Chung, T.W., Luo, C.M. (1999). Vapor pressure of the aqueous desiccants. Journal of Chemical Engineering Data, 44, 1024-1027. EnergyPlus. (2013). Energyplus input/output reference. U.S. Department of Energy, Building Technologies Program. Ham, S.W., Lee, S.J., Jeong J.W. (2016). Operating energy savings in a liquid desiccant and dew point evaporative cooling-assisted 100% outdoor air system. Energy and Buildings, 116, 535-552. Katejanekarn T., Kumar S. (2008). Performance of a solar-regenerated liquid desiccant ventilation pre-conditioning system. Energy and Buildings, 40, 1252-1267. Katejanekarn T., Chirarattananon S., Kumar S. (2009). An experimental study fo a solar-regenerated liquid desiccant ventilation pre-conditioning system. Solar Energy, 83, 920-933. Kim M.H., Choi A.S., Jeong J.W. (2012). Energy performance of an evaporative cooler assisted 100% outdoor air system in the heating season operation. Energy and Buildings, 49, 402-409. Kim M.H., Park J.S., Jeong J.W. (2013). Energy saving potential of liquid desiccant in evaporative-cooling-assisted 100% outdoor air system. Energy and Buildings, 59, 726-736. Kim M.H., Park J.Y., Sung M.K., Choi A.S., Jeong J.W. (2014). Annual operating energy savings of liquid desiccant and evaporative-cooling-assisted 100% outdoor air system. Energy and Buildings, 76, 538-550. Kozubal E., Woods J., Burch J., Boranian A., Merrigan T. (2011). Desiccant enhanced evaporative air-conditioning (DEVap): evaluation of a new concept in ultra efficient air conditioning. National Renewable Energy Laboratory. Kozubal E., Woods J., Judkoff R. (2012). Development and analysis of desiccant enhanced evaporative air conditioner prototype. National Renewable Energy Laboratory. Katejanekarn T., Kumar S. (2008). Performance of a solar-regenerated liquid desiccant ventilation pre-conditioning system. Energy and Buildings, 40, 1252-1267. Katejanekarn T., Chirarattananon S., Kumar S. (2009). An experimental study fo a solar-regenerated liquid desiccant ventilation pre-conditioning system. Solar Energy, 83, 920-933. Fumo N., Goswami DY. Study of an aqueous lithium chloride desiccant system: air dehumidification and desiccant regeneration. Solar Energy, 72, 351-361.
Information
- Publisher :Korean Institute of Architectural Sustainable Environment and Building Systems
- Publisher(Ko) :한국건축친환경설비학회
- Journal Title :Journal of Korean Institute of Architectural Sustainable Environment and Building Systems
- Journal Title(Ko) :한국건축친환경설비학회논문집
- Volume : 12
- No :1
- Pages :61-71
- Received Date : 2018-01-23
- Revised Date : 2018-02-27
- Accepted Date : 2018-02-27
- DOI :https://doi.org/10.12972/jkiaebs.20180006


Journal of Korean Institute of Architectural Sustainable Environment and Building Systems







