Development Of A Supercritical Carbon Dioxide Brayton Cycle

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Development Of A Supercritical Carbon Dioxide Brayton Cycle ( development-of-supercritical-carbon-dioxide-brayton-cycle )

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2-13. Four shaft arrangement. ................................................................................................................. 14 2-14. HYSYS one shaft model ................................................................................................................ 15 2-15. HYSYS two shaft model................................................................................................................ 15 2-16. HYSYS three shaft model.............................................................................................................. 16 2-17. HYSYS four shaft model ............................................................................................................... 16 3-1. Cycle efficiency as a function of IHX primary outlet temperature for different reactor core outlet temperature. ................................................................................................................. 21 3-2. Cycle pressure ratio as a function of IHX primary outlet temperature for different reactor core outlet temperature. ................................................................................................................. 21 3-3. Busbar efficiency as a function of temperature difference across the reactor. .............................. 23 3-4. Busbar efficiency as a function of compressor efficiencies and reactor inlet temperatures. ......... 23 3-5. Busbar efficiency at various cooling temperature.......................................................................... 24 3-6. Busbar efficiency as a function of IHX efficiencies and reactor inlet temperatures...................... 24 3-7. Power turbine inlet temperature as a function of temperature drop across the reactor. ................. 25 3-8. Pressure-Enthalpy diagram. ........................................................................................................... 26 3-9. T-S diagram for isentropic and polytropic compression................................................................ 26 3-10. GTHTR300 Schematic................................................................................................................... 26 3-11. Comparison of cycle efficiency. .................................................................................................... 27 3-12. Comparison of pressure ratio. ........................................................................................................ 27 3-13. Stream property of the inlet and outlet of the high-pressure compressor from HYSYS simulation....................................................................................................................................... 28 3-14. CO2 pressure-enthalpy diagram and paths to obtain the HPC exit temperature of 1130C............ 28 3-15. HYSYS Schematic for a supercritical CO2 cycle with 49.3% efficiency. .................................... 29 3-16. HYSYS layout for the indirect Brayton cycle. .............................................................................. 31 3-17. Cycle layout with multiple reheat option. ...................................................................................... 36 3-18. Snapshot of HYSYS model of the combined cycle with N2/He. .................................................. 40 3-19. The combined cycle. ...................................................................................................................... 40 3-20. Reheat Cycle with CO2 fluid in the power conversion unit. ......................................................... 42 xii

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