A review of combined power and cooling cycles
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D. Yogi Goswami | Ricardo Vasquez Padilla | Goekmen Demirkaya | R. V. Padilla | D. Goswami | Goekmen Demirkaya
[1] B. Zheng,et al. A combined power and ejector refrigeration cycle for low temperature heat sources , 2010 .
[2] Gokmen Demirkaya,et al. Theoretical and Experimental Analysis of Power and Cooling Cogeneration Utilizing Low Temperature Heat Sources , 2011 .
[3] Noam Lior,et al. Methodology for thermal design of novel combined refrigeration/power binary fluid systems , 2007 .
[4] A. Hasan,et al. Exergy analysis of a combined power and refrigeration thermodynamic cycle driven by a solar heat source , 2003 .
[5] G. K. Alexis,et al. Performance parameters for the design of a combined refrigeration and electrical power cogeneration system , 2007 .
[6] Yiping Dai,et al. Exergy analysis, parametric analysis and optimization for a novel combined power and ejector refrigeration cycle , 2009 .
[7] Piero Colonna,et al. Industrial trigeneration using ammonia–water absorption refrigeration systems (AAR) , 2003 .
[8] Yiping Dai,et al. A theoretical study on a novel combined power and ejector refrigeration cycle , 2009 .
[9] Keisuke Takeshita,et al. Experimental results of an ammonia-water mixture turbine system , 2001 .
[10] Shaoguang Lu,et al. Optimization of a novel combined power/refrigeration thermodynamic cycle , 2002 .
[11] Takuto Araki,et al. Cycle Analysis using Exhaust Heat of SOFC and Turbine Combined Cycle by Absorption Chiller , 2006 .
[12] Ibrahim Dincer,et al. Thermodynamic analysis of a novel ammonia-water trilateral Rankine cycle , 2008 .
[13] D. Yogi Goswami,et al. Analysis of power and cooling cogeneration using ammonia-water mixture , 2010 .
[14] Noam Lior,et al. Development of a novel combined absorption cycle for power generation and refrigeration , 2007 .
[15] Brian Agnew,et al. Energy recovery from diesel engine exhaust gases for performance enhancement and air conditioning , 2002 .
[16] P. J. Sebastian,et al. Cogeneration Fuel Cell-Sorption Air Conditioning Systems , 2011 .
[17] S. Chungpaibulpatana,et al. A review of absorption refrigeration technologies , 2001 .
[18] K. T. Chau,et al. Thermoelectric automotive waste heat energy recovery using maximum power point tracking , 2009 .
[19] Reinhard Radermacher,et al. Absorption Chillers and Heat Pumps , 1996 .
[20] Thanarath Sriveerakul,et al. Analysis of a combined Rankine–vapour–compression refrigeration cycle , 2010 .
[21] Yiping Dai,et al. Thermodynamic analysis of a new combined cooling, heat and power system driven by solid oxide fuel cell based on ammonia–water mixture , 2011 .
[22] Ruzhu Wang,et al. Experimental study on a continuous adsorption water chiller with novel design , 2005 .
[23] Yiping Dai,et al. A new combined cooling, heating and power system driven by solar energy , 2009 .
[24] Marco Badami,et al. Performance analysis of an innovative small-scale trigeneration plant with liquid desiccant cooling system , 2009 .
[25] Satha Aphornratana,et al. A theoretical and experimental study of a small-scale steam jet refrigerator , 1995 .
[26] D. Yogi Goswami,et al. Analysis of a combined power and cooling cycle for low-grade heat sources , 2011 .
[27] Yoshiharu Amano,et al. Effectiveness of an ammonia-water mixture turbine system to hot water heat source , 1999 .
[28] Zhi-Gao Sun,et al. Experimental studying of a small combined cold and power system driven by a micro gas turbine , 2010 .
[29] D. Yogi Goswami,et al. Multi-Objective Optimization of a Combined Power and Cooling Cycle for Low-Grade and Midgrade Heat Sources , 2012 .
[30] Ruzhu Wang,et al. Energy and exergy analyses on a novel hybrid solar heating, cooling and power generation system for remote areas , 2009 .
[31] Yoshiharu Amano,et al. Experimental study of advanced cogeneration system with ammonia–water mixture cycles at bottoming , 2005 .
[32] Yiping Dai,et al. Parametric analysis for a new combined power and ejector–absorption refrigeration cycle , 2009 .
[33] A. I. Kalina,et al. Combined-Cycle System With Novel Bottoming Cycle , 1984 .
[34] Saffa Riffat,et al. A combined heat and power system for buildings driven by solar energy and gas , 2002 .
[35] Minggao Ouyang,et al. Study of working fluid selection of organic Rankine cycle (ORC) for engine waste heat recovery , 2011 .
[36] Feridun Hamdullahpur,et al. Exergy analysis of an integrated solid oxide fuel cell and organic Rankine cycle for cooling, heating and power production , 2010 .
[37] T. J. Marciniak,et al. Comparison of Rankine-cycle power systems: effects of seven working fluids , 1981 .
[38] Gunnar Tamm,et al. A New Combined Power and Cooling Cycle for Low Temperature Heat Sources , 2003 .
[39] Graeme Maidment,et al. Combined cooling heat and power in supermarkets , 2002 .
[40] S. A. Sherif,et al. Analysis of Heat-Driven Jet-Pumped Cooling System for Space Thermal Management , 2001 .
[41] Alberto Coronas,et al. SIMULATION STUDIES ON GAX BASED KALINA CYCLE FOR BOTH POWER AND COOLING APPLICATIONS , 2013 .
[42] Ibrahim Dincer,et al. Thermodynamic performance assessment of an ammonia–water Rankine cycle for power and heat production , 2010 .
[43] Yiping Dai,et al. Parametric analysis and optimization for a combined power and refrigeration cycle , 2008 .
[44] D. Y. Goswami,et al. On Evaluating Efficiency of a Combined Power and Cooling Cycle , 2003 .
[45] D. Goswami,et al. A combined power/cooling cycle , 2000 .
[46] Hongguang Jin,et al. Thermodynamic analysis of a novel absorption power/cooling combined-cycle , 2006 .
[47] Yoshiharu Amano,et al. Experimental Results of an Ammonia-Water Mixture Turbine System: Effectiveness With a Low Temperature Heat Source , 2004 .
[48] Chris L. Ward,et al. Performance of a combined organic Rankine cycle and vapor compression cycle for heat activated cooli , 2011 .
[49] Na Zhang,et al. Proposal and analysis of a novel ammonia–water cycle for power and refrigeration cogeneration , 2007 .
[50] D. Y. Goswami,et al. Organic Working Fluids for a Combined Power and Cooling Cycle , 2005 .
[51] O. M. Ibrahim,et al. Absorption power cycles , 1996 .
[52] A. Hasan,et al. First and second law analysis of a new power and refrigeration thermodynamic cycle using a solar heat source , 2002 .
[53] D. Yogi Goswami,et al. Solar Thermal Power Technology: Present Status and Ideas for the Future , 1998, Successfully Managing the Risk and Development of Your Business and Technology.
[54] Brian Agnew,et al. Combined power and cooling, an analysis of the combined Diesel-absorption cycle , 1999 .