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A review of research and development of supercritical carbon dioxide Brayton cycle technology in nuclear engineering applications

机译:核工程应用中超临界二氧化碳布雷顿循环技术研究与开发综述

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摘要

Supercritical carbon dioxide (S-CO2) Brayton cycle has many advantages including high power conversion efficiency at mediate temperature, compact configuration, high system simplicity and low efficiency loss using dry cooling, which make it well suited to nuclear reactor applications. S-CO2 power cycle can be used as power conversion system for almost all the nuclear power systems including small modular reactor (SMR), Generation IV reactor and fusion reactor. It can also be used as a self-propellant and self-sustaining decay heat removal system to enhance the safety of existing commercial nuclear power plant. An update of research activities is needed to identify the unique research interests and challenges of S-CO2 power cycle based nuclear applications. This paper is a review of the research activities which have been carried out for S-CO2 power cycle based nuclear applications worldwide. The characteristics of S-CO2 power cycle are presented first to explain the distinctive features of this power cycle. Then the progresses in the experimental study of integrated S-CO2 Brayton cycle test loops are reviewed comprehensively to shed a light on its technical maturity in laboratory. Moreover, a review of various research areas concerning S-CO2 power cycle working as power conversion system or heat removal system for nuclear applications are carried out.Based on these review works, the challenges and perspectives are discussed and highlighted in the paper. Conclusions can be achieved that S-CO2 Brayton cycle is a promising option to broaden nuclear energy's application scope.
机译:超临界二氧化碳(S-CO2)Brayton循环在介导温度,紧凑的配置,高系统简单和低效率损失中具有许多优点,包括干燥冷却,使其适用于核反应堆应用。 S-CO2电源循环可用作几乎所有核电系统的电力转换系统,包括小模块化反应器(SMR),发电IV反应器和熔融反应堆。它还可以用作自推进剂和自我维持衰减散热系统,以增强现有商业核电厂的安全性。需要更新研究活动,以确定S-CO2基于核应用的独特研究兴趣和挑战。本文是对全球基于S-CO2电源周期的核应用进行的研究活动综述。首先提出了S-CO2功率循环的特性以解释该功率循环的独特特征。然后,全面审查了S-CO2 BRAYTON循环测试环路实验研究中的进展,以阐明了实验室的技术成熟度。此外,在这些审查工作中进行了作为电力转换系统或用于核应用的热量去除系统的S-CO2电力循环的各种研究领域的审查。在这些评论工作中,讨论并突出了挑战和观点。结论可以实现S-CO2 BRAYTON循环是扩大核能应用范围的有希望的选择。

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  • 来源
    《Nuclear Engineering and Design》 |2020年第11期|110767.1-110767.23|共23页
  • 作者单位

    Xi An Jiao Tong Univ Sch Nucl Sci & Technol 28 Xianning West Rd Xian Shaanxi Peoples R China;

    Xi An Jiao Tong Univ Sch Nucl Sci & Technol 28 Xianning West Rd Xian Shaanxi Peoples R China;

    Xi An Jiao Tong Univ Sch Nucl Sci & Technol 28 Xianning West Rd Xian Shaanxi Peoples R China;

    Xi An Jiao Tong Univ Sch Nucl Sci & Technol 28 Xianning West Rd Xian Shaanxi Peoples R China;

    Xi An Jiao Tong Univ Sch Nucl Sci & Technol 28 Xianning West Rd Xian Shaanxi Peoples R China|Xi An Jiao Tong Univ State Key Lab Multiphase Flow Power Engn Xian 710049 Peoples R China;

    Nucl Power Inst China CNNC Key Lab Nucl Reactor Thermal Hydraul Technol Chengdu 610041 Peoples R China;

    Nucl Power Inst China CNNC Key Lab Nucl Reactor Thermal Hydraul Technol Chengdu 610041 Peoples R China;

    Nucl Power Inst China Sci & Technol Reactor Syst Design Technol Lab Chengdu 610041 Peoples R China;

    Nucl Power Inst China Sci & Technol Reactor Syst Design Technol Lab Chengdu 610041 Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Brayton cycle; Supercritical carbon dioxide; Nuclear engineering; Safety analysis; Control strategy;

    机译:布雷顿循环;超临界二氧化碳;核工程;安全分析;控制策略;

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