燃油组件底部喷嘴碎屑过滤效率评估

Zheng Mei-yin, Jiao Yong-jun, Li Zheng-yang, Ren Quan-yao, Xiao Zhong, Su Min
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引用次数: 0

摘要

碎屑微动磨损是压水堆燃料失效的关键因素之一。评估底部喷嘴的碎屑过滤效率是分析燃油组件可靠性的重要手段。提出了底喷嘴碎屑过滤效率评价方法,包括实验研究方法和数值计算方法。实验方法分为a类碎屑(球、六角螺母、弹簧、垫片、销)和b类碎屑(圆柱形金属丝、螺旋形金属切削、金属条)。实验方法表明,半球面结构的底喷嘴对b类碎屑的过滤效率可达100%。数值模拟方法是CFD和DEM的耦合过程,主要分析岩屑的运动和碰撞。底部喷嘴对圆柱形碎屑的过滤效果较好,数值模拟的过滤效果与实验结果吻合较好。该过滤效率评价方法适用于评价底喷嘴的碎屑过滤性能,有助于底喷嘴的设计与验证。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Debris filtering efficiency assessment of the fuel assembly bottom nozzle
The debris-induced fretting wear is a key factor to cause the fuel failure in pressurized water reactor (PWR). Assessing the debris filtering efficiency of bottom nozzle is an important way to analyze the reliability of fuel assembly. The debris filtering efficiency assessment method of bottom nozzle was proposed, which concludes experimental research method and numerical calculation method. The experimental method concludes A-types debris (ball, hex nut, spring, gasket, and pin) and B-types debris (cylindrical metal wire, helical metal cutting, and metal strip). The experimental method demonstrates that the bottom nozzle with hemispherical surface structure presents the filtering efficiency of 100 % for B-types debris. The numerical simulation method is a coupling process of CFD and DEM, which mainly analyze the movement and collision of debris. The bottom nozzle shows better filtering efficiency for cylindrical debris, and the filtering efficiency in the numerical simulation is in good accordance with the experimental results. The filtering efficiency assessment method is suitable for evaluating the debris filtering behavior of bottom nozzle and helpful for the design and verification of bottom nozzle.
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