Several authors have reported in the literature the benefits of transcritical carbon dioxide regenerative Rankine power cycles using low - and medium - temperature sources. However, their technical potential when driven by solar-thermal collectors has not been fully addressed yet. The methodology presented herein is based on two parametric analyses: the first approach attempts to determine the heat transfer area of the regenerator and its respective cost, and the second approach studies the radial heat transfer in each solar collector, at different operation pressures, aiming to determine the heat losses, the pressure drop and the overall performance of the collectors with the use of supercritical Carbon Dioxide. Therefore, through this ana...
The supercritical carbon dioxide (S-CO2) power cycle is a promising development for waste heat recov...
This work investigates the performance of a supercritical CO2 cycle as the bottoming cycle of a comm...
Supercritical carbon dioxide (sCO2) cycles are studied as the next-generation power cycles in order ...
The paper presents an efficiency analysis of two transcritical CO2 power cycles with regenerative he...
A comprehensive performance evaluation of a solar assisted transcritical CO2-based Rankine cycle sys...
Various supercritical CO2 Brayton cycles were subjected to energy and exergy analysis for the purpos...
The objective of the present study is the detailed investigation and optimization of a transcritical...
Aiming to reduce the use of conventional energy sources, alternative methods should be applied in or...
This paper investigates an optimal arrangement of the solar collectors of a supercritical CO2-based ...
In this paper, a transcritical carbon dioxide heat pump system driven by solar-owered CO2 Rankine cy...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...
Integration of thermal energy storage with concentrated solar power (CSP) plant aids in smoothing of...
Compared with the conventional Rankine cycle, the CO2 transcritical power cycle gives a higher therm...
Concentrated Solar Power using supercritical CO2 (S-CO2) recompression Brayton cycles offer advantag...
This paper focuses on unconventional thermodynamic cycles and their applications in alternative ener...
The supercritical carbon dioxide (S-CO2) power cycle is a promising development for waste heat recov...
This work investigates the performance of a supercritical CO2 cycle as the bottoming cycle of a comm...
Supercritical carbon dioxide (sCO2) cycles are studied as the next-generation power cycles in order ...
The paper presents an efficiency analysis of two transcritical CO2 power cycles with regenerative he...
A comprehensive performance evaluation of a solar assisted transcritical CO2-based Rankine cycle sys...
Various supercritical CO2 Brayton cycles were subjected to energy and exergy analysis for the purpos...
The objective of the present study is the detailed investigation and optimization of a transcritical...
Aiming to reduce the use of conventional energy sources, alternative methods should be applied in or...
This paper investigates an optimal arrangement of the solar collectors of a supercritical CO2-based ...
In this paper, a transcritical carbon dioxide heat pump system driven by solar-owered CO2 Rankine cy...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...
Integration of thermal energy storage with concentrated solar power (CSP) plant aids in smoothing of...
Compared with the conventional Rankine cycle, the CO2 transcritical power cycle gives a higher therm...
Concentrated Solar Power using supercritical CO2 (S-CO2) recompression Brayton cycles offer advantag...
This paper focuses on unconventional thermodynamic cycles and their applications in alternative ener...
The supercritical carbon dioxide (S-CO2) power cycle is a promising development for waste heat recov...
This work investigates the performance of a supercritical CO2 cycle as the bottoming cycle of a comm...
Supercritical carbon dioxide (sCO2) cycles are studied as the next-generation power cycles in order ...