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- W2018581957 abstract "SYNOPSIS In this paper, power density, defined as the ratio of power output to maximum specific volume in the cycle, is analysed and optimised for an irreversible closed intercooled regenerated Brayton cycle coupled to variable-temperature heat reservoirs, according to the theory of finite-time thermodynamics. The analytical formulae for dimensionless power density and efficiency, as functions of the total pressure ratio, the inter-cooling pressure ratio, the component (i.e. regenerator, intercooler, and hot- and cold-side heat exchangers) effectivenesses, the compressor and turbine efficiencies, the thermal capacity rates of the working fluid and the heat reservoirs, the pressure recovery coefficients, the heat reservoir inlet temperature ratio, and the inlet temperature ratio of cooling fluid in the intercooler and the cold-side heat reservoir, are derived. The optimum dimensionless power density is obtained by optimising the intercooling pressure ratio. The maximum dimensionless power density is obtain..." @default.
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- W2018581957 date "2009-01-01" @default.
- W2018581957 modified "2023-09-24" @default.
- W2018581957 title "Power density optimisation of an irreversible variable-temperature heat reservoir closed intercooled regenerated Brayton cycle" @default.
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- W2018581957 doi "https://doi.org/10.1080/01430750.2009.9675086" @default.
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