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OPTIMAL DESIGN OF SUPERCRITICAL CO2 POWER CYCLE FOR HIGH TEMPERATURE GAS-COOLED REACTOR

  • Thermal Power Research Institute

科研成果: 书/报告/会议事项章节会议稿件同行评审

1 引用 (Scopus)

摘要

The supercritical carbon dioxide (sCO2) Brayton cycle has been regarded as a promising technique for future energy conversion systems. sCO2 recompression cycle configuration has been widely studied for nuclear reactors with the temperature difference between the reactor inlet and outlet restricted to 200℃. However, this cycle configuration may be not suitable for high temperature gas-cooled reactors (HTGR) with a temperature difference up to 500℃. Herein, we aim to develop an optimal sCO2 cycle configuration for HTGR with a broad temperature span, which has both high cycle efficiency and sufficient mechanical security guaranteed by energy cascade utilization. We propose a recompression cycle combined with reheat and expansion technologies, and perform a parameter optimization in Fortran platform. First, the thermodynamic models of the system are established. Then, the parametric analysis is conducted about the effects of split ratio, temperature difference of the heat exchangers, inlet parameters of turbines and compressors, and isentropic efficiencies on the cycle performance. The sCO2 cycle tailored for HTGR can achieve a cycle efficiency of 44.98%. Our work not only highlights the design criteria of temperature-match between the HTGR and sCO2 cycle but also guides the numerical assessment of the steady-state performance.

源语言英语
主期刊名Thermal-Hydraulics and Safety Analysis
出版商American Society of Mechanical Engineers (ASME)
ISBN(电子版)9780791888261
DOI
出版状态已出版 - 2024
已对外发布
活动2024 31st International Conference on Nuclear Engineering, ICONE 2024 - Prague, 捷克共和国
期限: 4 8月 20248 8月 2024

出版系列

姓名Proceedings of 2024 31st International Conference on Nuclear Engineering, ICONE 2024
6

会议

会议2024 31st International Conference on Nuclear Engineering, ICONE 2024
国家/地区捷克共和国
Prague
时期4/08/248/08/24

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