This work is part of the European project “Next-CSP” which aims to develop a next generation of concentrated solar power plants using the particle technology and, particularly, the fluidized particle-in-tube technology working at high temperature (>700°C). A 3MWth pilot unit including a solar receiver, storage tanks, a heat exchanger and a gas turbine is under assembly at the top of a solar tower (Themis-France) to demonstrate this technology. The unit will use the fluidized particle-in-tube solar receiver concept. The scaling up of this concept needs researches on the gas-particle flow structure evolution along the tube and on wall-to-fluidized particles heat transfer. Therefore, several experimental set-ups were implemented to study the p...
The concept of solar receiver using fluidized particles as heat transfer fluid is attractive from th...
International audienceUsing group A particle suspensions as heat transfer fluid in concentrated sola...
AbstractThis paper demonstrates a new concept of heat transfer fluid (HTF) for CSP applications, dev...
This paper addresses experimental results on fluidized particle-in-tube solar receiver using a finne...
The fluidized particle-in-tube solar receiver concept is promoted as an attractive solution for heat...
This paper focuses on the concept of tubular Dense Particle Suspension solar receiver that consists ...
Previous studies proved the Dense Particle Suspension (DPS) - also called Upward Bubbling Fluidized ...
This thesis, financed in the frame of the CSP2 European project, concerns the study of a new kind of...
Solid particles can be used as a heat transfer medium in concentrated solar power plants to operate ...
International audienceA dense particle suspension, also called an upflow bubbling fluidized bed, is ...
Fluidized particle-in-tube solar absorbers are increasingly investigated both as receivers in a sola...
Solid particles can be used as a heat transfer medium in concentrated solar power plants to operate ...
International audienceThis paper focuses on a new concept of Heat Transfer Fluid (HTF) for Concentra...
This paper demonstrates a new concept of heat transfer fluid (HTF) for CSP applications, developed i...
Current solar Heat Transfer Fluids (HTF) have a limited working temperature (\u3c 600 °C) and presen...
The concept of solar receiver using fluidized particles as heat transfer fluid is attractive from th...
International audienceUsing group A particle suspensions as heat transfer fluid in concentrated sola...
AbstractThis paper demonstrates a new concept of heat transfer fluid (HTF) for CSP applications, dev...
This paper addresses experimental results on fluidized particle-in-tube solar receiver using a finne...
The fluidized particle-in-tube solar receiver concept is promoted as an attractive solution for heat...
This paper focuses on the concept of tubular Dense Particle Suspension solar receiver that consists ...
Previous studies proved the Dense Particle Suspension (DPS) - also called Upward Bubbling Fluidized ...
This thesis, financed in the frame of the CSP2 European project, concerns the study of a new kind of...
Solid particles can be used as a heat transfer medium in concentrated solar power plants to operate ...
International audienceA dense particle suspension, also called an upflow bubbling fluidized bed, is ...
Fluidized particle-in-tube solar absorbers are increasingly investigated both as receivers in a sola...
Solid particles can be used as a heat transfer medium in concentrated solar power plants to operate ...
International audienceThis paper focuses on a new concept of Heat Transfer Fluid (HTF) for Concentra...
This paper demonstrates a new concept of heat transfer fluid (HTF) for CSP applications, developed i...
Current solar Heat Transfer Fluids (HTF) have a limited working temperature (\u3c 600 °C) and presen...
The concept of solar receiver using fluidized particles as heat transfer fluid is attractive from th...
International audienceUsing group A particle suspensions as heat transfer fluid in concentrated sola...
AbstractThis paper demonstrates a new concept of heat transfer fluid (HTF) for CSP applications, dev...