AbstractIn this study, closed CO2 cycles are investigated for potential application in existing nuclear power stations, referring in particular to Mochovce power station currently under construction in Slovak Republic. Three different CO2 cycles layouts are explored in the range of temperatures offered by the nuclear source and of the existing cooling towers. The investigation shows that the common opinion that S-CO2 cycles are well suited in the medium to a high temperature range only (higher than about 450°C) seems unjustified. For a primary heat source with a maximum temperature of 299°C and a heat sink with a minimum temperature of 19°C and reasonable assumptions about advanced turbomachines and heat exchanger performances, the supercri...
There have been a number of studies involving the use of gases operating in the supercritical mode f...
The supercritical carbon dioxide (S-CO2) power cycle is a promising development for waste heat recov...
[Introduction] Because of the low temperature parameter, the power generation efficiency of the smal...
AbstractIn this study, closed CO2 cycles are investigated for potential application in existing nucl...
Thesis (Sc. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2004.Includes ...
The supercritical carbon dioxide (S-CO2) is a possible cooling system for the new generations of nuc...
Abstract Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO...
Cogeneration, or combined heat and power (CHP), is the use of a heat engine or power station to simu...
International audienceThe supercritical CO2 (sc-CO2) cycle is being promoted worldwide by many R&D e...
The supercritical CO2 power cycle (s-CO2) is receiving much interest in the utilization of waste hea...
The transition to the use of supercritical carbon dioxide as a working fluid for power generation un...
Abstract In the present paper, the possibility of increasing the thermodynamic efficiency of an elec...
Bottoming thermodynamic power cycles using supercritical carbon dioxide (sCO2) are a promising techn...
Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO(2)) are ...
A systematic, detailed major component and system design evaluation and multiple-parameter optimizat...
There have been a number of studies involving the use of gases operating in the supercritical mode f...
The supercritical carbon dioxide (S-CO2) power cycle is a promising development for waste heat recov...
[Introduction] Because of the low temperature parameter, the power generation efficiency of the smal...
AbstractIn this study, closed CO2 cycles are investigated for potential application in existing nucl...
Thesis (Sc. D.)--Massachusetts Institute of Technology, Dept. of Nuclear Engineering, 2004.Includes ...
The supercritical carbon dioxide (S-CO2) is a possible cooling system for the new generations of nuc...
Abstract Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO...
Cogeneration, or combined heat and power (CHP), is the use of a heat engine or power station to simu...
International audienceThe supercritical CO2 (sc-CO2) cycle is being promoted worldwide by many R&D e...
The supercritical CO2 power cycle (s-CO2) is receiving much interest in the utilization of waste hea...
The transition to the use of supercritical carbon dioxide as a working fluid for power generation un...
Abstract In the present paper, the possibility of increasing the thermodynamic efficiency of an elec...
Bottoming thermodynamic power cycles using supercritical carbon dioxide (sCO2) are a promising techn...
Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO(2)) are ...
A systematic, detailed major component and system design evaluation and multiple-parameter optimizat...
There have been a number of studies involving the use of gases operating in the supercritical mode f...
The supercritical carbon dioxide (S-CO2) power cycle is a promising development for waste heat recov...
[Introduction] Because of the low temperature parameter, the power generation efficiency of the smal...