Neutronics design of VVER-1000 fuel assembly with burnable poison particles

Autor: Hoai-Nam Tran, Van-Khanh Hoang, Peng Hong Liem, Hung T.P. Hoang
Jazyk: angličtina
Rok vydání: 2019
Předmět:
Zdroj: Nuclear Engineering and Technology, Vol 51, Iss 7, Pp 1729-1737 (2019)
Druh dokumentu: article
ISSN: 1738-5733
DOI: 10.1016/j.net.2019.05.026
Popis: This paper presents neutronics design of VVER-1000 fuel assembly using burnable poison particles (BPPs) for controlling excess reactivity and pin-wise power distribution. The advantage of using BPPs is that the thermal conductivity of BPP-dispersed fuel pin could be improved. Numerical calculations have been conducted for optimizing the BPP parameters using the MVP code and the JENDL-3.3 data library. The results show that by using Gd2O3 particles with the diameter of 60 μm and the packing fraction of 5%, the burnup reactivity curve and pin-wise power distribution are obtained approximately that of the reference design. To minimize power peaking factor (PPF), total BP amount has been distributed in a larger number of fuel rods. Optimization has been conducted for the number of BPP-dispersed rods, their distribution, BPP diameter and packing fraction. Two models of assembly consisting of 18 BPP-dispersed rods have been selected. The diameter of 300 μm and the packing fraction of 3.33% were determined so that the burnup reactivity curve is approximate that of the reference one, while the PPF can be decreased from 1.167 to 1.105 and 1.113, respectively. Application of BPPs for compensating the reduction of soluble boron content to 50% and 0% is also investigated. Keywords: Fuel assembly, Burnable poison, Burnup reactivity, Power peaking factor, VVER-1000
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