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首页> 外文期刊>Annals of nuclear energy >Performance comparison and optimization of two configurations of (Very) high temperature gas-cooled reactors combined cycles
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Performance comparison and optimization of two configurations of (Very) high temperature gas-cooled reactors combined cycles

机译:(非常)高温气冷堆两种联合循环的性能比较和优化

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(Very) high temperature gas-cooled reactors have a reactor outlet temperature of 900-1000 degrees C, which provides a base for higher cycle efficiency by adopting closed nuclear gas-turbine combined cycles (NGTCCs) instead of direct regenerative cycles (RCs). Typical NGTCCs (TCCs) usually only adopt precoolers and do not include recuperators. The analysis of precoolers in the TCC indicates that a simplified TCC (SCC), a TCC without precoolers, has higher cycle efficiency because of a higher reactor inlet temperature. Moreover, a criterion whether a TCC adopts precoolers is derived. If NGTCCs includes recuperators, it becomes a typical compound combined cycle (TCCC). The analysis of recuperators in the TCCC indicates that recuperator's effectiveness should be above 0.7 for high efficiency, otherwise recuperators can only be used to adjust the inlet temperatures of reactors and steam generators. Based on the discussion of pre coolers and recuperators in NGTCCs, a simplified TCCC (SCCC) that only including recuperator is proposed. The further parametric calculations show that the optimum cycle efficiency is 50.0-57.8% for RC, 51.5-59.2% for SCC and 53.3-61.5% for SCCC, with a reactor outlet temperature of 900-1200 degrees C. Once the reactor inlet temperature is limited to 400-750 degrees C, a threshold value (500-600 degrees C) of reactor inlet temperature that separates the working condition of SCC and SCCC is obtained. The SCC is most favorable when the limit temperature is below the threshold value; otherwise, the SCCC has the highest efficiency. (C) 2016 Elsevier Ltd. All rights reserved.
机译:(非常)高温气冷堆的出口温度为900-1000摄氏度,这通过采用闭式核燃气轮机联合循环(NGTCC)代替直接再生循环(RC),为更高的循环效率提供了基础。典型的NGTCC(TCC)通常仅采用预冷器,不包括换热器。对TCC中预冷器的分析表明,简化的TCC(SCC),即没有预冷器的TCC,由于反应器入口温度较高,因此具有较高的循环效率。此外,得出了TCC是否采用预冷器的标准。如果NGTCC包括换热器,它将成为典型的复合联合循环(TCCC)。 TCCC中换热器的分析表明,换热器的效率应高于0.7以实现高效率,否则换热器只能用于调节反应堆和蒸汽发生器的入口温度。基于NGTCC中预冷却器和换热器的讨论,提出了仅包括换热器的简化TCCC(SCCC)。进一步的参数计算表明,反应器出口温度为900-1200摄氏度时,RC的最佳循环效率为50.0-57.8%,SCC的最佳循环效率为51.5-59.2%,SCCC的最佳循环效率为53.3-61.5%。如果将温度限制在400-750摄氏度之间,则可以获得一个将SCC和SCCC的工作条件分​​开的反应堆入口温度的阈值(500-600摄氏度)。当极限温度低于阈值时,SCC最有利。否则,SCCC的效率最高。 (C)2016 Elsevier Ltd.保留所有权利。

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