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The potentiality of thermal safety and economy of the U_3Si_2-SiC system in PWR

机译:压水堆中U_3Si_2-SiC系统的热安全性和经济性潜力

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The U3Si2-SiC system is one of the most promising accident tolerant fuel/clad systems. In this paper, the potentiality of thermal safety and economy of the U3Si2-SiC system was further exploited based on the constant fuel assembly structure of the PWR. Increasing fuel rod diameter from 8.5 to 10.5 mm with the consideration of the design constraint, assembly level analyses of thermal hydraulics and neutron physic were conducted to evaluate the variation of thermal safety and economy. The neutronic analysis result shows that the fuel rod design with smaller pellet diameter can prolong the reactor lifetime and increase k-infinity. The thermal hydraulic analysis result indicates that the fuel rod design with smaller fuel rod diameter can obtain high departure from nucleate boiling ratio (DNBR) with an acceptable fuel temperature during normal operation and reactivity initiated accident (RIA). The fuel rod design with smaller fuel rod diameter has better thermal safety and economy. (C) 2020 Elsevier Ltd. All rights reserved.
机译:U3Si2-SiC系统是最有前途的耐事故性燃料/包层系统之一。本文基于压水堆的恒定燃料组件结构,进一步开发了U3Si2-SiC系统的热安全性和经济性。考虑到设计约束,将燃料棒直径从8.5毫米增加到10.5毫米,进行了热力学和中子物理学的装配水平分析,以评估热安全性和经济性的变化。中子学分析结果表明,较小颗粒直径的燃料棒设计可以延长反应堆寿命并增加k无穷大。热工水力分析结果表明,在正常运行和反应性引发事故(RIA)的情况下,具有较小燃料棒直径的燃料棒设计可以在可接受的燃料温度下获得与核沸腾比(DNBR)的较大偏离。燃料棒直径较小的燃料棒设计具有更好的热安全性和经济性。 (C)2020 Elsevier Ltd.保留所有权利。

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