1 김경훈, "저온 열원 활용을 위한 암모니아-물 혼합물을 작동유체로 하는 칼리나 사이클의 성능 해석" 한국수소및신에너지학회 22 (22): 109-117, 2011
2 김경훈, "저온 열원 활용을 위한 암모니아-물 재생 랭킨 사이클의 성능 해석" 한국태양에너지학회 31 (31): 15-22, 2011
3 C. Yu, "Thermoelectric automotive waste heat energy recovery using maximum power point tracking" 50 : 1506-1512, 2009
4 F. Xu, "Thermodynamic properties of ammonia-water mixtures for power cycle application" 24 : 525-536, 1999
5 S. Zhang, "Thermodynamic analysis on a modified Kalina cycle with parallel cogeneration of power and refrigeration" 163 : 1-127, 2018
6 P. Roy, "Thermodynamic analysis of a power cycle using a low-temperature source and a binary NH3 -H2O mixture as working fluid" 49 : 48-58, 2010
7 R. Shankar, "Performance investigation of Kalina cooling cogeneration cycles" 86 : 163-185, 2018
8 S. Ogriseck, "Integration of Kalina cycle in a combined heat and power plant, a case study" 29 : 2843-2848, 2009
9 K. H. Kim, "Effects of Ammonia Concentration on the Thermodynamic Performances of Ammonia-Water Based Power Cycles" 530 : 7-16, 2012
10 K. H. Kim, "Comparative exergy analysis of ammonia-water based Rankine cycles with and without regeneration" 12 : 344-361, 2013
1 김경훈, "저온 열원 활용을 위한 암모니아-물 혼합물을 작동유체로 하는 칼리나 사이클의 성능 해석" 한국수소및신에너지학회 22 (22): 109-117, 2011
2 김경훈, "저온 열원 활용을 위한 암모니아-물 재생 랭킨 사이클의 성능 해석" 한국태양에너지학회 31 (31): 15-22, 2011
3 C. Yu, "Thermoelectric automotive waste heat energy recovery using maximum power point tracking" 50 : 1506-1512, 2009
4 F. Xu, "Thermodynamic properties of ammonia-water mixtures for power cycle application" 24 : 525-536, 1999
5 S. Zhang, "Thermodynamic analysis on a modified Kalina cycle with parallel cogeneration of power and refrigeration" 163 : 1-127, 2018
6 P. Roy, "Thermodynamic analysis of a power cycle using a low-temperature source and a binary NH3 -H2O mixture as working fluid" 49 : 48-58, 2010
7 R. Shankar, "Performance investigation of Kalina cooling cogeneration cycles" 86 : 163-185, 2018
8 S. Ogriseck, "Integration of Kalina cycle in a combined heat and power plant, a case study" 29 : 2843-2848, 2009
9 K. H. Kim, "Effects of Ammonia Concentration on the Thermodynamic Performances of Ammonia-Water Based Power Cycles" 530 : 7-16, 2012
10 K. H. Kim, "Comparative exergy analysis of ammonia-water based Rankine cycles with and without regeneration" 12 : 344-361, 2013
11 C. Yue, "Comparative analysis of a bottoming transcritical ORC and a Kalina cycle for engine exhaust heat recovery" 89 : 764-774, 2015
12 K. H. Kim, "Assessment of pinch point characteristics in heat exchangers and condensers of am- monia-water based power cycles" 113 : 970-981, 2014
13 V. A. Prisyazhniuk, "Alternative trends in development of thermal power plant" 28 : 190-194, 2008
14 S. H. J. Bao, "A review of working fluid and expander selections for organic Rankine cycle" 24 : 325-342, 2013
15 P. A. Lolos, "A Kalina power cycle driven by renewable energy sources" 34 : 457-464, 2009