The role of a pre-cooler is critical to the sCO2-BC as it not only acts as a sink but also controls the conditions at the main compressor’s inlet that are vital to the cycle’s overall performance. Despite their prime importance, studies on the pre-cooler’s design are hard to find in the literature. This is partly due to the unavailability of data around the complex thermohydraulic characteristics linked with their operation close to the critical point. Henceforth, the current work deals with designing and optimizing pre-cooler by utilizing machine learning (ML), an in-house recuperator and pre-cooler design, an analysis code (RPDAC), and a cycle design point code (CDPC). Initially, data computed using 3D Reynolds averaged Navier-Stokes (RAN...
The closed gas cycle based on supercritical carbon dioxide (sCO2) is a promising solution to realize...
This paper reports on the development of a cycle modeling tool capable of simulating both design-poi...
This paper documents a thermo-fluid-dynamic mean-line model for the preliminary design of multistage...
In the current study, a multi-layered approach, combining 3D Reynolds Averaged Navier–Stokes (RANS) ...
Turbine as a key power unit is vital to the novel supercritical carbon dioxide cycle (sCO2-BC). At t...
A real fluid heat engine power cycle analysis code has been developed for analyzing the zero dimensi...
Supercritical carbon dioxide as a working fluid in a closed Brayton cycle is proving to be more effi...
As part of worldwide efforts to reduce the negative effects of global warming through the carbon neu...
The annual waste heat available from industry in the European Union is more than 2700 PJ. Consequent...
This paper deals with thermodynamic optimization of supercritical CO2 recompression and partial cool...
Recompression supercritical carbon dioxide (SCO2) Brayton Cycle for the Chinese Initiative Accelerat...
For the application of waste heat recovery (WHR), supercritical CO2 (S-CO2) Brayton power cycles off...
In the last century, the refrigerant R744 (carbon dioxide) has become an environmentally friendly so...
The global climate change challenge and the international commitment to reduce carbon emission can b...
Supercritical carbon dioxide (S-CO2) Brayton cycle represents significant advantages in solar tower ...
The closed gas cycle based on supercritical carbon dioxide (sCO2) is a promising solution to realize...
This paper reports on the development of a cycle modeling tool capable of simulating both design-poi...
This paper documents a thermo-fluid-dynamic mean-line model for the preliminary design of multistage...
In the current study, a multi-layered approach, combining 3D Reynolds Averaged Navier–Stokes (RANS) ...
Turbine as a key power unit is vital to the novel supercritical carbon dioxide cycle (sCO2-BC). At t...
A real fluid heat engine power cycle analysis code has been developed for analyzing the zero dimensi...
Supercritical carbon dioxide as a working fluid in a closed Brayton cycle is proving to be more effi...
As part of worldwide efforts to reduce the negative effects of global warming through the carbon neu...
The annual waste heat available from industry in the European Union is more than 2700 PJ. Consequent...
This paper deals with thermodynamic optimization of supercritical CO2 recompression and partial cool...
Recompression supercritical carbon dioxide (SCO2) Brayton Cycle for the Chinese Initiative Accelerat...
For the application of waste heat recovery (WHR), supercritical CO2 (S-CO2) Brayton power cycles off...
In the last century, the refrigerant R744 (carbon dioxide) has become an environmentally friendly so...
The global climate change challenge and the international commitment to reduce carbon emission can b...
Supercritical carbon dioxide (S-CO2) Brayton cycle represents significant advantages in solar tower ...
The closed gas cycle based on supercritical carbon dioxide (sCO2) is a promising solution to realize...
This paper reports on the development of a cycle modeling tool capable of simulating both design-poi...
This paper documents a thermo-fluid-dynamic mean-line model for the preliminary design of multistage...