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On the improvements in neutronics analysis of the unit cell for the pebble-bed fluoride-salt-cooled high-temperature reactor

机译:卵石床氟化物-盐冷却高温反应堆单元电池中子学分析的改进

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The stochastic characteristics of the randomly distributed coated-fuel particles, the thermal-neutron scattering effect of the fluoride-salt and the resonance elastic scattering effect of heavy nuclides were neglected in early neutronics studies on the Pebble-Bed Fluoride-salt-cooled High-temperature Reactor (PB-FHR). In order to assess the impact of these effects on the neutronics calculation, the stochastic effect is analyzed by applying the explicit random modeling approach and Chord Length Sampling method, the thermal-neutron scattering effect of the fluoride-salt is quantified by evaluating and processing a new thermal-neutron scattering data library, and the resonance elastic scattering effect is covered by using the Doppler Broadening Rejection Correction (DBRC) method in this work. According to the critical calculations of the PB-FHR pebble unit cells with different TRISO Packing Factor (TPF), the different stochastic modeling methods lead to a difference of k(inf) by tens of pcm, the thermal scattering effect of 2LiF-BeF2 results in a decreasement of k(inf) by 104-290 pcm and the resonance elastic scattering effect leads to a decreasement of k(inf) by 107-437 pcm, respectively. In addition, the thermal-neutron scattering effect and resonance elastic scattering effect can be addible, the total impact of the thermal scattering effect of 2LiF-BeF2 and the resonance elastic scattering effect of heavy nuclide leads to a decreasement of k(inf) by 204-747 pcm. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在卵石-床-氟化物-盐冷却的高燃料电池的早期中子学研究中,忽略了随机分布的涂层燃料颗粒的随机特性,氟化物-盐的热中子散射效应和重核素的共振弹性散射效应。温度电抗器(PB-FHR)。为了评估这些影响对中子学计算的影响,应用显式随机建模方法和弦长采样方法分析了随机效应,并通过评估和处理氟盐的热中子散射效应来量化。新的热中子散射数据库,并通过多普勒展宽拒绝校正(DBRC)方法覆盖了共振弹性散射效果。根据具有不同TRISO堆积因子(TPF)的PB-FHR卵石晶胞的临界计算,不同的随机建模方法导致k(inf)相差数十pcm,2LiF-BeF2的热散射效应得到结果k(inf)减小104-290 pcm,共振弹性散射效应分别导致k(inf)减小107-437 pcm。另外,可以增加热中子散射效应和共振弹性散射效应,2LiF-BeF2的热散射效应和重核素的共振弹性散射效应的总影响导致k(inf)降低204 -747厘米(C)2016 Elsevier Ltd.保留所有权利。

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