HPR1000自供电中子探测器布局优化

Yao Zhou, Liangzhi Cao, Changyou Zhao, Zhifeng Li, Yuxiang Zhu
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摘要

自供电中子探测器(SPND)已广泛应用于堆芯关键参数的在线监测,包括功率分布、功率峰值因子等。在SPND布置设计中,关键参数包括径向SPND数量和加载位置以及轴向分段数量。不同的SPND布局反映了不同的配电改造能力,这直接关系到核电站的安全性和经济性。以HPR1000为例,基于nnecp - onion三维在线配电监测系统,分析了SPND布置图设计的中子灵敏度。通过对功率分布重构误差的比较分析,评价了SPND设计的合理性,提出了优化设计建议。对于推荐的SPND布局设计,径向加载位置间隔布置,轴向段数为15。推荐的SPND布置图设计在HPR1000反应堆全寿命期内性能稳定,配电改造的均数误差在[0.32%,0.48%]范围内,满足配电改造的安全限值和精度要求。本工作验证了NECP-ONION系统的在线监测能力。为HPR1000上的SPND实验提供了技术参考。
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Layout Optimization of Self-Powered Neutron Detector for HPR1000
Self-Powered Neutron Detector (SPND) has been widely applied for the on-line monitoring of the key core parameters, including the power distribution, power-peak factor and so on. For the SPND layout design, the vital parameters include the SPND amount and loading position in the radial direction and segment amount in the axial direction. Different SPND layout reflects different ability of power distribution reconstruction, which is directly related to the safety and economy of nuclear power plant. For HPR1000, the neutronics sensitivity of SPND layout design is analyzed based on a 3D on-line power distribution monitoring system NECP-ONION. Through the comparison and analysis of the reconstruction errors of power distribution, the design rationality of SPND is evaluated and the optimization design is recommended. For the recommended SPND layout design, the loading positions in the radial direction are arranged at intervals and segment amount in the axial direction is 15. The recommended SPND layout design shows stable performance in the whole life for HPR1000 reactor, and the RMS errors of the power distribution reconstruction has been in the range of [0.32%, 0.48%], meeting the safety limit and accuracy requirements of power distribution reconstruction. This work verifies the on-line monitoring ability of NECP-ONION system. Additionally, it provides a technical reference for the SPND experiment in HPR1000.
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