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Numerical Simulation and Sensitivity Study of the Rhodium Self-Powered Neutron Detector Used in PWR

机译:压水堆中铑自供电中子探测器的数值模拟和灵敏度研究

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摘要

Focusing on the specific self-powered neutron detector (SPND) using rhodium as the emitter material, this paper performs the numerical simulation and sensitivity study for SPNDs used in a typical pressurized water reactor (PWR). The computational model was developed based on a PWR lattice code bamboo lattice and a Monte Carlo code Geant4. In order to validate the model, the neutron sensitivities with single-energy incident neutrons are calculated and compared against the experimental results. Influences of the incident neutron energy spectrum and the emitter burnup to the neutron sensitivity of the SPND are analyzed. Bamboo lattice is used to calculate the incident neutron energy spectrum and the emitter nucleus densities which are the environment of the SPND. Numerical results show that the neutron sensitivity decreases due to the increase of the enrichment, the assembly average burnup, the boron concentration, the moderator temperature, and the burnable poison rods. The increase in the emitter burnup will lead to the decrease of the neutron sensitivity. Taking the incident neutron energy spectrum and the nucleus density into account together, the neutron sensitivity decreases with the increase in the assembly average burnup.
机译:针对以铑为发射体的自供电中子探测器(SPND),本文对典型压水堆(PWR)中使用的SPND进行了数值模拟和灵敏度研究。该计算模型是基于PWR格子代码Bamboo格子和Monte Carlo代码Geant4开发的。为了验证该模型,计算了具有单能量入射中子的中子敏感性并将其与实验结果进行比较。分析了入射中子能谱和发射极燃耗对SPND中子灵敏度的影响。竹格用于计算入射中子的能谱和发射核密度,这是SPND的环境。数值结果表明,中子敏感性由于富集度,组装平均燃耗,硼浓度,减速剂温度和可燃毒棒的增加而降低。发射极燃耗的增加将导致中子灵敏度的降低。同时考虑入射中子能谱和原子核密度,中子灵敏度随着组装平均燃耗的增加而降低。

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