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Keywords: Brayton cycle
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Proceedings Papers
Proc. ASME. IMECE2021, Volume 11: Heat Transfer and Thermal Engineering, V011T11A070, November 1–5, 2021
Publisher: American Society of Mechanical Engineers
Paper No: IMECE2021-70869
... Abstract The supercritical carbon dioxide (sCO 2 ) Brayton cycle has a wide application prospect in the field of the waste-heat utilization of the marine gas turbine due to its characteristics of high efficiency, compact, safety and good economy. Inspired by this, the convective heat transfer...
Proceedings Papers
Proc. ASME. IMECE2021, Volume 11: Heat Transfer and Thermal Engineering, V011T11A069, November 1–5, 2021
Publisher: American Society of Mechanical Engineers
Paper No: IMECE2021-70203
... Abstract The Brayton cycle of supercritical carbon dioxide (S-CO 2 ), is an ideal choice to replace the outdated power cycle. In order to improve the heat transfer performance, the Print Circuit Heat Exchanger (PCHE) has been attracted more attention, since it has a larger specific heat...
Proceedings Papers
Proc. ASME. IMECE2021, Volume 8A: Energy, V08AT08A017, November 1–5, 2021
Publisher: American Society of Mechanical Engineers
Paper No: IMECE2021-69358
... Abstract The supercritical CO 2 (S-CO 2 ) Brayton cycle is considered to be one of the most promising cycles for the fourth-generation nuclear power system. In this study, the printed circuit heat exchanger (PCHE) is introduced into the S-CO 2 Brayton cycle as the recuperator...
Proceedings Papers
Proc. ASME. IMECE2019, Volume 6: Energy, V006T06A063, November 11–14, 2019
Publisher: American Society of Mechanical Engineers
Paper No: IMECE2019-11852
... refrigeration output. A maximum combined efficiency for power and cooling generation above 45% can be found when the inlet temperature at the Brayton cycle is set at 700 °C. Brayton cycle Goswami cycle combined cooling and power waste heat recovery INTEGRATION AND OPTIMIZATION OF SUPERCRITICAL...
Proceedings Papers
Proc. ASME. IMECE2005, Advanced Energy Systems, 541-551, November 5–11, 2005
Publisher: American Society of Mechanical Engineers
Paper No: IMECE2005-82368
... in the LH2 evaporator due to the relatively higher heat transfer t Keywords: Brayton emperature difference. The energy efficiency and exergy efficiency are 79% and 52%, respectively. The system has a back-work ratio only 1/4 of that in a Brayton cycle with ambient as the heat sink, and thus can produce 30.14...