Recently, the supercritical carbon dioxide (s-CO2) Brayton cycle has been identified as a promising candidate for solar-thermal energy conversion due to its potentially high thermal efficiency (50%, for turbine inlet temperatures of ~ 1000 K). Realization of such a system requires development of solar receivers which can raise the temperature of s-CO2 by over 200 K, to a receiver outlet temperature of 1000 K. Volumetric receivers are an attractive alternative to tubular receivers due to their geometry, functionality and reduced thermal losses. A concept of a ceramic pressurized volumetric receiver for s-CO2 has been developed in this work. Computational Fluid Dynamics (CFD) analysis along with a Discrete Ordinate method (DOM) radiation heat...
Supercritical CO2 Brayton cycle has emerged as an alternative power block for Concentrated Solar The...
In this paper, a solar water heater using supercritical carbon dioxide as working fluid is proposed ...
This paper establishes the design requirements for the development and testing of direct supercritic...
Single phase performance and appealing thermo-physical properties make supercritical carbon dioxide ...
This work focuses on the development of a solar power thermal receiver for a supercritical-carbon di...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...
This work focuses on the development of a solar power thermal receiver for a supercritical-carbon di...
A new method for capturing solar energy is proposed for a Concentrated Solar Power (CSP) plant with ...
Graduation date: 2016Characterization of a microchannel solar thermal receiver for supercritical car...
As we move toward energy independence and more ambitious clean energy goals, solar energy research m...
Supercritical CO2 (SCO2) Brayton cycle is one of the best approaches for concentrated solar power to...
A supercritical CO2 test facility is currently being developed at Indian Institute of Science, Banga...
© 2020 Elsevier Ltd A novel solar power tower system that integrates with the cascade supercritical ...
In this paper we investigate and compare two dierent solar receiver technologies for concentrated so...
In this study, a direct recompression supercritical CO2 Brayton cycle, using parabolic trough solar ...
Supercritical CO2 Brayton cycle has emerged as an alternative power block for Concentrated Solar The...
In this paper, a solar water heater using supercritical carbon dioxide as working fluid is proposed ...
This paper establishes the design requirements for the development and testing of direct supercritic...
Single phase performance and appealing thermo-physical properties make supercritical carbon dioxide ...
This work focuses on the development of a solar power thermal receiver for a supercritical-carbon di...
Solar power tower technology can achieve higher temperatures than the most common commercial technol...
This work focuses on the development of a solar power thermal receiver for a supercritical-carbon di...
A new method for capturing solar energy is proposed for a Concentrated Solar Power (CSP) plant with ...
Graduation date: 2016Characterization of a microchannel solar thermal receiver for supercritical car...
As we move toward energy independence and more ambitious clean energy goals, solar energy research m...
Supercritical CO2 (SCO2) Brayton cycle is one of the best approaches for concentrated solar power to...
A supercritical CO2 test facility is currently being developed at Indian Institute of Science, Banga...
© 2020 Elsevier Ltd A novel solar power tower system that integrates with the cascade supercritical ...
In this paper we investigate and compare two dierent solar receiver technologies for concentrated so...
In this study, a direct recompression supercritical CO2 Brayton cycle, using parabolic trough solar ...
Supercritical CO2 Brayton cycle has emerged as an alternative power block for Concentrated Solar The...
In this paper, a solar water heater using supercritical carbon dioxide as working fluid is proposed ...
This paper establishes the design requirements for the development and testing of direct supercritic...