This paper investigates and compares several highly efficient thermodynamic cycles that are suitable for coupling with particle-in-tube fluidized-bed solar receiver technology. In such a receiver, high-temperature particles are used as both a heat transfer fluid and a storage medium. A dense particle suspension (DPS) is created through an upward bubbling fluidized-bed (UBFB) flow inside the receiver tubes, which constitutes the “particle-in-tube” solar receiver concept. Reaching higher temperatures is seen as a key factor for future cost reductions in the solar plant, as this leads to both higher power conversion efficiency and increased energy storage density. Three advanced thermodynamic cycles are analyzed in this work: the supercritical...
In this work, it is investigated about the application of an Integrated Solar Combined Cycle (ISCC) ...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
AbstractA novel solar power plant concept is presented, based on the use of a dense particle suspens...
In this paper, particles-based thermal energy storage (TES) system for concentrated solar power (CSP...
Concentrated solar power (CSP) plants using dense particle suspension as heat transfer fluid and par...
Concentrated solar power plants using molten salts as heat transfer and storage fluid have emerged a...
AbstractA novel solar power plant concept is presented, based on the use of a dense particle suspens...
The Next-CSP project aims at improving the performances of central receiver Solar Thermal Electric (...
AbstractSolar Particle Receivers (SPR) are under development to drive concentrating solar plants (CS...
© 2018 The key to achieve an economically more attractive concentrated solar power plant is to work ...
This work presents an innovative indirect supercritical CO2 – air driven concentrated solar power pl...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
This work presents an innovative indirect supercritical CO2 – air driven concentrated solar power pl...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
In this work, it is investigated about the application of an Integrated Solar Combined Cycle (ISCC) ...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...
AbstractA novel solar power plant concept is presented, based on the use of a dense particle suspens...
In this paper, particles-based thermal energy storage (TES) system for concentrated solar power (CSP...
Concentrated solar power (CSP) plants using dense particle suspension as heat transfer fluid and par...
Concentrated solar power plants using molten salts as heat transfer and storage fluid have emerged a...
AbstractA novel solar power plant concept is presented, based on the use of a dense particle suspens...
The Next-CSP project aims at improving the performances of central receiver Solar Thermal Electric (...
AbstractSolar Particle Receivers (SPR) are under development to drive concentrating solar plants (CS...
© 2018 The key to achieve an economically more attractive concentrated solar power plant is to work ...
This work presents an innovative indirect supercritical CO2 – air driven concentrated solar power pl...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
This work presents an innovative indirect supercritical CO2 – air driven concentrated solar power pl...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
In this work, it is investigated about the application of an Integrated Solar Combined Cycle (ISCC) ...
The present work assesses the thermodynamic performance of an indirect supercritical CO2 – air drive...
The present work introduces an indirect supercritical CO2 - air driven concentrated solar plant with...