[EN] In this work the possibilities of enhancing the energy performance of CO2 transcritical refrigeration systems using a dedicated mechanical subcooling cycle are analysed theoretically. Using simplified models of the cycles, the modification of the optimum operating conditions of the CO2 transcritical cycle by the use of the mechanical subcooling are analysed and discussed. Next, for the optimum conditions, the possibilities of improving the energy performance of the transcritical cycle with the mechanical subcooling are evaluated for three evaporating levels (5, 5 and 30 C) for environment temperatures from 20 to 35 C using propane as refrigerant for the subcooling cycle. It has been observed that the cycle combination will allow increa...
CO2 transcritical booster architectures are widely analyzed to be applied in centralized commercial...
Use of Dedicated Mechanical Subcoolers gives rise to the need of an optimisation process involving g...
AbstractCO2 has low critical pressure and temperature. This gives an opportunity CO2 cycles to work ...
In this work the possibilities of enhancing the energy performance of CO2 transcritical refrigeratio...
Different alternatives are being studied nowadays in order to enhance the behavior of transcritical ...
CO2 transcritical refrigeration cycles require optimization to reach the performance of conventional...
In the last century, the refrigerant R744 (carbon dioxide) has become an environmentally friendly so...
Restrictive environmental regulations are driving the use of CO 2 as working fluid in commercial vap...
Subcooling systems are positioned in recent years as one of the best solutions to improve the effici...
In CO2 refrigerating system, one of the most effective techniques for the improvement of energy eff...
Subcooling methods at the exit of the gas cooler in transcritical CO2 commercial refrigeration syste...
Dedicated Mechanical Subcooling (DMS) is one of the most investigated and effective strategies appli...
As a consequence of the F-Gas regulation R404A is no longer an option for commercial refrigeration a...
CO2 is an excellent natural refrigerant that can be used in almost any commercial cooling applicatio...
After the rediscovery of CO2 as a prominent, environmentally benign working fluid, several technolog...
CO2 transcritical booster architectures are widely analyzed to be applied in centralized commercial...
Use of Dedicated Mechanical Subcoolers gives rise to the need of an optimisation process involving g...
AbstractCO2 has low critical pressure and temperature. This gives an opportunity CO2 cycles to work ...
In this work the possibilities of enhancing the energy performance of CO2 transcritical refrigeratio...
Different alternatives are being studied nowadays in order to enhance the behavior of transcritical ...
CO2 transcritical refrigeration cycles require optimization to reach the performance of conventional...
In the last century, the refrigerant R744 (carbon dioxide) has become an environmentally friendly so...
Restrictive environmental regulations are driving the use of CO 2 as working fluid in commercial vap...
Subcooling systems are positioned in recent years as one of the best solutions to improve the effici...
In CO2 refrigerating system, one of the most effective techniques for the improvement of energy eff...
Subcooling methods at the exit of the gas cooler in transcritical CO2 commercial refrigeration syste...
Dedicated Mechanical Subcooling (DMS) is one of the most investigated and effective strategies appli...
As a consequence of the F-Gas regulation R404A is no longer an option for commercial refrigeration a...
CO2 is an excellent natural refrigerant that can be used in almost any commercial cooling applicatio...
After the rediscovery of CO2 as a prominent, environmentally benign working fluid, several technolog...
CO2 transcritical booster architectures are widely analyzed to be applied in centralized commercial...
Use of Dedicated Mechanical Subcoolers gives rise to the need of an optimisation process involving g...
AbstractCO2 has low critical pressure and temperature. This gives an opportunity CO2 cycles to work ...