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A supercritical or transcritical Rankine cycle with ejector using low-grade heat

机译:带低热量的喷射器的超临界或跨临界朗肯循环

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摘要

A supercritical or transcritical Rankine cycle with ejector (ESRC, ETRC) based on the basic supercritical or transcritical Rankine cycle (SRC, TRC) are proposed for the conversion of low-grade heat to power in this paper. The thermodynamic comparative analyses on the SRC, TRC and ESRC, ETRC are conducted on the power output and thermal efficiency of the cycles. The carbon dioxide is chosen as the working fluid for the cycles. Water is chosen as the fluid of the low-grade heat. The water temperature is selected in a range of 60-90 ℃, a typical water temperature is 80 ℃, and the mass flow rate is 1 kg/s. The same temperature and mass flow rate of the water is the standard condition for the comparative analysis of the thermodynamic performance. Results show that the net power output of the cycles could be ranked from high to low: ESRC > ETRC > SRC > TRC, and the thermal efficiency could be ranked from high to low: TRC > SRC > ESRC > ETRC.
机译:本文提出了基于基本超临界或跨临界朗肯循环(SRC,TRC)的带喷射器的超临界或跨临界朗肯循环(ESRC,ETRC),用于将低级热量转换为电能。对SRC,TRC和ESRC,ETRC进行热力学比较分析,以分析功率输出和循环的热效率。选择二氧化碳作为循环的工作流体。选择水作为低级热量的流体。水温的选择范围是60-90℃,典型的水温是80℃,质量流量是1 kg / s。相同温度和质量流量的水是热力学性能比较分析的标准条件。结果表明,循环的净功率输出可以从高到低排序:ESRC> ETRC> SRC> TRC,而热效率可以从高到低排序:TRC> SRC> ESRC> ETRC。

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