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Adoption of nitrogen power conversion system for small scale ultra-long cycle fast reactor eliminating intermediate sodium loop

机译:小型超长周期快堆采用氮动力转换系统,消除中间钠回路

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摘要

As one of SFRs, the ultra-long cycle fast reactor with a power rating of 100 MWe (UCFR-100) was introduced for a 60-year operation. As an alternative to the traditional steam Rankine cycle for the power conversion system, gas based Brayton cycle has been considered for UCFR-100. Among Supercritical CO2 (S-CO2), Helium (He), Nitrogen (N-2) as candidates for the power conversion system for UCFR-100, an N-2 power conversion system was chosen considering both safety and thermal performance aspects. The elimination of the intermediate sodium loop could be achieved due to the safety and stable characteristics of nitrogen working fluid. In this paper, sensitivity studies with respect to several controlled parameters on N-2 power conversion, system were performed to optimize the system. Furthermore, the elimination of the intermediate loop was evaluated with respect to its impact on the thermodynamic performance and other aspects. (C) 2015 Elsevier Ltd. All rights reserved.
机译:作为SFR之一,引入了额定功率为100 MWe(UCFR-100)的超长周期快堆,可运行60年。作为功​​率转换系统的传统蒸汽朗肯循环的替代方法,UCFR-100已考虑使用基于气体的布雷顿循环。在超临界CO2(S-CO2),氦气(He),氮气(N-2)作为UCFR-100功率转换系统的候选产品中,考虑到安全性和热性能方面,选择了N-2功率转换系统。由于氮气工作液的安全性和稳定性,可以消除中间的钠回路。在本文中,针对N-2功率转换系统的几个受控参数进行了敏感性研究,以优化系统。此外,就消除中间回路对热力学性能和其他方面的影响进行了评估。 (C)2015 Elsevier Ltd.保留所有权利。

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