© 2017 The Authors. In high temperature waste heat to power conversion applications, bottoming thermodynamic cycles using carbon dioxide in supercritical phase (sCO2) have recently become a promising developing technology that could outperform conventional Organic Rankine Cycle systems in terms of efficiency and compactness. Moreover, carbon dioxide is a fluid chemically stable, reliable, low-cost, non-toxic, non-flammable and readily available. Supercritical CO2 power generation systems have been investigated by scientists and engineers mostly for large scale applications. However, when the electrical target output power is lower (50-100 kW), there are additional challenges on the turbomachinery design that need to be addressed. In the cu...
Closed Joule-Brayton thermodynamic cycles working with carbon dioxide in supercritical conditions (s...
Bottoming thermodynamic power cycles using supercritical carbon dioxide (sCO2) are a promising techn...
The aim of this paper is to conduct a preliminary comparison of different turbine architectures for ...
This paper presents the design procedure and analysis of a radial turbine design for a mid-scale sup...
For power production, the emerging technologies of supercritical carbon dioxide (S-CO2) cycles show ...
Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO(2)) are ...
Abstract Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO...
Axial turbines are gaining prominence in supercritical carbon-di-oxide (S-CO2) Brayton cycle power b...
Copyright: The Authors, 2019. Industrial processes are currently characterized by thermal energy los...
Supercritical CO (sCO) cycles are considered as a promising technology for next generation concentra...
The closed gas cycle based on supercritical carbon dioxide (sCO2) is a promising solution to realize...
Supercritical CO2 (s-CO2) Brayton cycle is indicated as one of the possible substitutes of the tradi...
Supercritical CO2 (sCO2) is considered as a working fluid in future Concentrating Solar Power (CSP) ...
Waste heat to power conversion is a promising approach to reduce the carbon intensity in industry an...
High efficiency, flexibility and competitive capital costs make supercritical CO2 (sCO2) systems a ...
Closed Joule-Brayton thermodynamic cycles working with carbon dioxide in supercritical conditions (s...
Bottoming thermodynamic power cycles using supercritical carbon dioxide (sCO2) are a promising techn...
The aim of this paper is to conduct a preliminary comparison of different turbine architectures for ...
This paper presents the design procedure and analysis of a radial turbine design for a mid-scale sup...
For power production, the emerging technologies of supercritical carbon dioxide (S-CO2) cycles show ...
Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO(2)) are ...
Abstract Bottoming thermodynamic systems based on supercritical carbon dioxide as working fluid (sCO...
Axial turbines are gaining prominence in supercritical carbon-di-oxide (S-CO2) Brayton cycle power b...
Copyright: The Authors, 2019. Industrial processes are currently characterized by thermal energy los...
Supercritical CO (sCO) cycles are considered as a promising technology for next generation concentra...
The closed gas cycle based on supercritical carbon dioxide (sCO2) is a promising solution to realize...
Supercritical CO2 (s-CO2) Brayton cycle is indicated as one of the possible substitutes of the tradi...
Supercritical CO2 (sCO2) is considered as a working fluid in future Concentrating Solar Power (CSP) ...
Waste heat to power conversion is a promising approach to reduce the carbon intensity in industry an...
High efficiency, flexibility and competitive capital costs make supercritical CO2 (sCO2) systems a ...
Closed Joule-Brayton thermodynamic cycles working with carbon dioxide in supercritical conditions (s...
Bottoming thermodynamic power cycles using supercritical carbon dioxide (sCO2) are a promising techn...
The aim of this paper is to conduct a preliminary comparison of different turbine architectures for ...