The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air driven concentrated solar plant with a packed bed thermal energy storage. A specific focus has been devoted to the flexibility requirements on both air and supercritical loops, highlighting key limitations and challenges that need to be addressed prior to a fruitful development of the proposed cycles. The introduced plant design enables a supercritical CO2 turbine inlet temperature of 800°C, overcoming the temperature limits imposed by the use of solar molten salts as primary heat transfer fluid. Furthermore, the packed bed thermal energy storage permits the decoupling between thermal power collection from the sun and electricity generation. Besid...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
In this presentation, a solar energy powered thermodynamic cycle using supercritical CO2 for combine...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
This work presents an innovative indirect supercritical CO2 – air driven concentrated solar power pl...
This work presents an innovative indirect supercritical CO2 – air driven concentrated solar power pl...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
In this presentation, a solar energy powered thermodynamic cycle using supercritical CO2 for combine...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
This work presents an innovative indirect supercritical CO2 – air driven concentrated solar power pl...
This work presents an innovative indirect supercritical CO2 – air driven concentrated solar power pl...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
In this presentation, a solar energy powered thermodynamic cycle using supercritical CO2 for combine...