Radial inflow turbines, characterized by a low specific speed, are a candidate architecture for the supercritical CO Brayton cycle at small scale, i.e., less than 5 MW. Prior cycle studies have identified the importance of turbine efficiency to cycle performance; hence, well-designed turbines are key in realizing this new cycle. With operation at high Reynolds numbers, and small scales, the relative importance of loss mechanisms in supercritical CO turbines is not known. This paper presents a numerical loss investigation of a 300 kW low specific speed radial inflow turbine operating on supercritical CO . A combination of steady-state and transient calculations is used to determine the source of loss within the turbine stage. Losses are comp...
The realization of commercial mini organic Rankine cycle (ORC) power systems (tens of kW of power ou...
Supercritical carbon dioxide (sCO2) mixtures have been found promising in improving the power genera...
Supercritical carbon dioxide (S-CO2) Brayton cycle system is a promising closed-loop energy conversi...
Radial inflow turbines, characterised by a low specific speed are a candidate architecture for the s...
The losses of supercritical CO2 radial turbines with design power scales of about 1 MW were investig...
Supercritical CO (sCO) cycles are considered as a promising technology for next generation concentra...
Supercritical CO (s-CO) Brayton power cycles are proposed as the next generation of thermal energy c...
This paper presents the design procedure and analysis of a radial turbine design for a mid-scale sup...
Supercritical CO2 (sCO2) is considered as a working fluid in future Concentrating Solar Power (CSP) ...
A one-dimensional model for a radial inflow turbine has been developed for super-critical carbon dio...
This study seeks to design the aerodynamic features a first stage vane for a 100 MW class supercriti...
Radial inflow turbines are a relevant architecture for energy extraction from supercritical CO2 powe...
It is critical to accurately predict the performance of radial inflow turbomachinery in the prelimin...
Radial inflow turbines are an arguably relevant architecture for energy extraction from ORC and supe...
The forced response of high-pressure sCO radial-inflow turbine blisk is studied with regards to inte...
The realization of commercial mini organic Rankine cycle (ORC) power systems (tens of kW of power ou...
Supercritical carbon dioxide (sCO2) mixtures have been found promising in improving the power genera...
Supercritical carbon dioxide (S-CO2) Brayton cycle system is a promising closed-loop energy conversi...
Radial inflow turbines, characterised by a low specific speed are a candidate architecture for the s...
The losses of supercritical CO2 radial turbines with design power scales of about 1 MW were investig...
Supercritical CO (sCO) cycles are considered as a promising technology for next generation concentra...
Supercritical CO (s-CO) Brayton power cycles are proposed as the next generation of thermal energy c...
This paper presents the design procedure and analysis of a radial turbine design for a mid-scale sup...
Supercritical CO2 (sCO2) is considered as a working fluid in future Concentrating Solar Power (CSP) ...
A one-dimensional model for a radial inflow turbine has been developed for super-critical carbon dio...
This study seeks to design the aerodynamic features a first stage vane for a 100 MW class supercriti...
Radial inflow turbines are a relevant architecture for energy extraction from supercritical CO2 powe...
It is critical to accurately predict the performance of radial inflow turbomachinery in the prelimin...
Radial inflow turbines are an arguably relevant architecture for energy extraction from ORC and supe...
The forced response of high-pressure sCO radial-inflow turbine blisk is studied with regards to inte...
The realization of commercial mini organic Rankine cycle (ORC) power systems (tens of kW of power ou...
Supercritical carbon dioxide (sCO2) mixtures have been found promising in improving the power genera...
Supercritical carbon dioxide (S-CO2) Brayton cycle system is a promising closed-loop energy conversi...