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- W1978875425 abstract "In this paper, finite-time thermodynamics (FTT) is applied to analyse the performance of an endoreversible intercooled regenerated Brayton cycle coupled to constant-temperature heat reservoirs. The analytical formulae of dimensionless power and efficiency of the cycle are derived. The intercooling pressure ratio is optimised for dimensionless power and efficiency, respectively. The effects of effectivenesses of the intercooler, the regenerator, the hot- and cold-side heat exchangers, the temperature ratio of cycle heat reservoirs and the temperature ratio between heat sinks of the intercooler and the cold-side heat reservoir on the optimal dimensionless power output and its corresponding efficiency, the optimal efficiency and its corresponding dimensionless power output and the intercooling pressure ratios which correspond to the optimal dimensionless power output or the optimal efficiency of the cycle are analysed by detailed numerical examples. When the effectiveness of the regenerator is zero and the temperature ratio of heat sink of the intercooler is equal to that of the cold-side heat reservoir, the intercooling process is not involved in the cycle, and the heat transfers between the working fluid and the heat reservoirs can be carried out ideally. The results of this paper then replicate those obtained in recent literature." @default.
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- W1978875425 date "2004-10-01" @default.
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- W1978875425 title "Heat transfer effect on the performance of an endoreversible closed intercooled regenerated Brayton cycle" @default.
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- W1978875425 doi "https://doi.org/10.1080/01430750.2004.9674961" @default.
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