Production of power in space for terrestrial use is of great interest in view of the rapidly rising power demand and its environmental impacts. Space also offers a very low temperature, making it a perfect heat sink for power plants, thus offering much higher efficiencies. This paper focuses on the evaluation and analysis of thermal Brayton, Ericsson and Rankine power cycles operating at space conditions on several appropriate working fluids. Under the examined conditions, the thermal efficiency of Brayton cycles reaches 63%, Ericsson 74%, and Rankine 85%. These efficiencies are significantly higher than those for the computed or real terrestrial cycles: by up to 45% for the Brayton, and 17 % for the Ericsson; remarkably 44 % for the Rankin...
An investigation was made of the relative influence of turbine inlet temperature, radiator temperatu...
"An investigation was made of the relative influence of turbine inlet temperature, radiator temperat...
A major fraction of today's electricity is generated by Rankine cycle power systems utilizing the th...
Production of power in space for terrestrial use is of great interest in view of the rapidly rising ...
Comparison of Brayton and Rankine cycle magnetogasdynamic space power generation systems for use wit...
This paper provides a preliminary analysis of the supercritical Brayton cycle, a power generation sy...
Among the different renewable sources of energy, solar power could play a primary role in the develo...
This study is focused on the analysis of representative thermodynamic cycles for power generation at...
Abstract--The subject of this analysis is a novel hybrid steam Rankine cycle, which was designed to ...
Space Rankine cycle power systems technology applied to ground-based power system
The merits of organic fluid space power cycles are surveyed and compared with those of alternate opt...
Solar Thermal Energy power plants operating with traditional steam Rankine cycles have a low thermal...
On the basis of the radiator area required for rejecting cycle waste heat, Rankine vapor cycles are ...
Rankine Cycles are an effective and efficient way of producing power from low-medium temperature hea...
Development of innovative thermodynamic cycles is important for the efficient utilization of low-tem...
An investigation was made of the relative influence of turbine inlet temperature, radiator temperatu...
"An investigation was made of the relative influence of turbine inlet temperature, radiator temperat...
A major fraction of today's electricity is generated by Rankine cycle power systems utilizing the th...
Production of power in space for terrestrial use is of great interest in view of the rapidly rising ...
Comparison of Brayton and Rankine cycle magnetogasdynamic space power generation systems for use wit...
This paper provides a preliminary analysis of the supercritical Brayton cycle, a power generation sy...
Among the different renewable sources of energy, solar power could play a primary role in the develo...
This study is focused on the analysis of representative thermodynamic cycles for power generation at...
Abstract--The subject of this analysis is a novel hybrid steam Rankine cycle, which was designed to ...
Space Rankine cycle power systems technology applied to ground-based power system
The merits of organic fluid space power cycles are surveyed and compared with those of alternate opt...
Solar Thermal Energy power plants operating with traditional steam Rankine cycles have a low thermal...
On the basis of the radiator area required for rejecting cycle waste heat, Rankine vapor cycles are ...
Rankine Cycles are an effective and efficient way of producing power from low-medium temperature hea...
Development of innovative thermodynamic cycles is important for the efficient utilization of low-tem...
An investigation was made of the relative influence of turbine inlet temperature, radiator temperatu...
"An investigation was made of the relative influence of turbine inlet temperature, radiator temperat...
A major fraction of today's electricity is generated by Rankine cycle power systems utilizing the th...