摘要
粗网节块程序如NGFM、SIMULATE等只能给出平均功率。而反应堆设计中更关心的是堆芯内燃料元件的功率分布。本文讨论了获得堆内元件功率分布的重构方法。双二次多项式用于快群中子通量展开,与双曲函数项结合的双二次多项式用于热群中子通量密度展开。研究了21项和13项展开法,并与CITATION细网格计算进行比较。结果表明,本文中研制的21项方法程序RECON比SIMULATE-3NEMO程序中所用的13项方法精确得多,在外围区域更明显。
he nodal codes such as NGFM and SIMULATE can only give the nodal averagepower distributions of a reactor core. But the pin power distribution of the reactor core ismore interesting for the nuclear reactor design. The reconstrucion methods to obtain the finepin power distribution in a reactor core are discussed in this paper. A bi-quartic polynomial isused for the fast-group flux expansion and a bi-quartic polynomial combined with hyperbolicterms is used for the thermal flux.The investigated expansions with 21-term and with 13term are compared with the results from CITATION fine mesh calculations. It is found thatthe 21-term code RECON is more accurate than the 13--term one,which is used inSIMULATE-3 and NEMO codes, especially in the peripheral regions.
出处
《清华大学学报(自然科学版)》
EI
CAS
CSCD
北大核心
1995年第3期1-6,共6页
Journal of Tsinghua University(Science and Technology)
基金
国家"八五"科技攻关项目
关键词
功率重构
反应堆
堆芯
粗网节块法
功率分布
pin power reconstrucionl nodal codel polynomial expansion
discontinuousfactor