© 2020 Elsevier Ltd A novel solar power tower system that integrates with the cascade supercritical carbon dioxide Brayton-steam Rankine cycle is proposed to tackle the challenges of a simple supercritical carbon dioxide system in solar power systems. It provides a large storage capacity and can react to the fluctuation of solar radiation by adjusting the mass flow rate of molten salts in the receiver and heat exchanger. The fundamental is illustrated and comprehensive mathematical models are built. Energy and exergy analysis in the heat collection and power conversion processes is conducted. A comparison between the novel system and simple supercritical carbon dioxide system is made at a design plant output of 10 MW. Results indicated that...
[Introduction] Supercritical CO2 (sCO2) Brayton cycle is a promising technology to improve the effic...
AbstractRecent research suggests that an emerging power cycle technology using supercritical carbon ...
AbstractConcentrated Solar Power using supercritical CO2 (S-CO2) recompression Brayton cycles offer ...
© 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...
AbstractSolar thermal electricity generation is taking up increasing proportions of future power gen...
This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2)...
Supercritical Carbon Dioxide (sCO2) cycles can achieve higher efficiency compared to steam-Rankine o...
Direct Steam Generation in Parabolic Troughs or Linear Fresnel solar collectors is a technology unde...
Various supercritical CO2 Brayton cycles were subjected to energy and exergy analysis for the purpos...
As we move toward energy independence and more ambitious clean energy goals, solar energy research m...
In this paper a new generation line-focusing solar plants coupled to a s-CO2 Brayton power cycles ar...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
Nowadays there is no dominant technology for the concentrated solar power plants that means there is...
[Introduction] Supercritical CO2 (sCO2) Brayton cycle is a promising technology to improve the effic...
AbstractRecent research suggests that an emerging power cycle technology using supercritical carbon ...
AbstractConcentrated Solar Power using supercritical CO2 (S-CO2) recompression Brayton cycles offer ...
© 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...
AbstractSolar thermal electricity generation is taking up increasing proportions of future power gen...
This work presents a preliminary thermodynamic assessment of three different supercritical CO2(sCO2)...
Supercritical Carbon Dioxide (sCO2) cycles can achieve higher efficiency compared to steam-Rankine o...
Direct Steam Generation in Parabolic Troughs or Linear Fresnel solar collectors is a technology unde...
Various supercritical CO2 Brayton cycles were subjected to energy and exergy analysis for the purpos...
As we move toward energy independence and more ambitious clean energy goals, solar energy research m...
In this paper a new generation line-focusing solar plants coupled to a s-CO2 Brayton power cycles ar...
This work discusses a preliminary thermodynamic assessment of three different supercritical CO2(sCO2...
Nowadays there is no dominant technology for the concentrated solar power plants that means there is...
[Introduction] Supercritical CO2 (sCO2) Brayton cycle is a promising technology to improve the effic...
AbstractRecent research suggests that an emerging power cycle technology using supercritical carbon ...
AbstractConcentrated Solar Power using supercritical CO2 (S-CO2) recompression Brayton cycles offer ...