This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2) power cycles integrated in a high temperature solar tower system, working up to 800°C. An indirect cycle configuration is considered with KCl-MgCl2molten salt as heat transfer fluid (HTF) in the solar receiver and a two tanks thermal energy storage (TES) system. The most promising cycle configuration is selected, optimizing the cycle turbine inlet temperature to achieve the best compromise between cycle and receiver efficiency. An estimate of the yearly energy yield of the proposed power plant is finally performed, indicating the possibility of reaching solar-to-electric efficiency of about 17.5%
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
Solar power towers (SPTs) integrated with thermal energy storage are promising solutions for solar e...
Integration of thermal energy storage with concentrated solar power (CSP) plant aids in smoothing of...
This work presents 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 work three CO2-based binary mixtures, CO2 + C6F6, CO2 + C2H3N and CO2 + C4F8, are compared a...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
Supercritical Carbon Dioxide (sCO2) cycles can achieve higher efficiency compared to steam-Rankine o...
© 2020 Elsevier Ltd A novel solar power tower system that integrates with the cascade supercritical ...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...
Various supercritical CO2 Brayton cycles were subjected to energy and exergy analysis for the purpos...
[Introduction] Supercritical CO2 (sCO2) Brayton cycle is a promising technology to improve the effic...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
Solar power towers (SPTs) integrated with thermal energy storage are promising solutions for solar e...
Integration of thermal energy storage with concentrated solar power (CSP) plant aids in smoothing of...
This work presents 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 work three CO2-based binary mixtures, CO2 + C6F6, CO2 + C2H3N and CO2 + C4F8, are compared a...
In the near future, a significant increase of the fraction of electricity produced by variable renew...
Supercritical Carbon Dioxide (sCO2) cycles can achieve higher efficiency compared to steam-Rankine o...
© 2020 Elsevier Ltd A novel solar power tower system that integrates with the cascade supercritical ...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...
Various supercritical CO2 Brayton cycles were subjected to energy and exergy analysis for the purpos...
[Introduction] Supercritical CO2 (sCO2) Brayton cycle is a promising technology to improve the effic...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
Solar power towers (SPTs) integrated with thermal energy storage are promising solutions for solar e...
Integration of thermal energy storage with concentrated solar power (CSP) plant aids in smoothing of...