This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2) power cycles applied to a high temperature solar tower system, with maximum temperatures up to 800 °C. The thermal power is transferred from the solar receiver to the power block through KCl-MgCl2molten salts as heat transfer fluid, therefore an indirect cycle configuration is considered assuming a surrounded field as the one of Gemasolar plant. The most promising cycle configuration in terms of solar-to-electric efficiency is selected, optimizing the cycle turbine inlet temperature to achieve the best compromise between cycle and receiver performance: the highest efficiency at design conditions is achieved by the Recompression with Main C...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
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...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2)...
This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2)...
This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2)...
This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2)...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
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...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2)...
This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2)...
This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2)...
This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2)...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...