WWER-1000燃料内组件非均匀功率密度及燃耗分析与优化

IF 0.5 4区 物理与天体物理 Q4 PHYSICS, NUCLEAR Physics of Atomic Nuclei Pub Date : 2025-02-01 DOI:10.1134/S1063778824100284
A. A. Lapkis, A. S. Starchenko, D. V. Trishechkin, I. Yu. Popova
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引用次数: 0

摘要

本文对WWER-1000反应堆燃料组件的变化进行了研究和系统化。在Serpent中子代码中模拟了大容量WWER-1000燃料负载中使用的6根u49g6型U-Gd燃料棒的无限高度燃料组件。根据计算结果,选择了沿燃料组件功率密度不均匀程度较小的U-Gd燃料棒布置方式,并评估了U-Gd燃料棒数量及其布置方式对反应性的影响。结果表明,从每根燃料棒功率密度和燃耗的不均匀性来看,U-Gd燃料棒在四环内的布置是最优的。考虑了燃料组件布置对单组铀- gd燃料棒燃耗的影响。提出了一种通过确定功率密度和燃耗差异最大的燃料棒组来减少计算资源成本的方法。将所研究的组件与现有的U49G6燃料组件进行了比较。提出了一种估算由于燃料棒燃烧不均匀而导致燃料组件中热能产生不足的方法,同时保持单个燃料棒的最大燃耗。在分析生产不足的基础上,提出了采用6根U-Gd燃料棒改进燃料组件布局的方案,以均衡功率密度场,减少非生产性燃料损失。为此,可以减少从中央燃料组件管开始计算的第一、第二和第十燃料棒环中的富集。由于这种分布,燃料组件中燃烧最多的燃料棒的燃耗可以减少到平均燃耗的1.015。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Analysis and Optimization of Intrafuel Assembly Nonuniform Power Density and Burnup of WWER-1000 Fuel

This paper considers and systematizes fuel assembly variants for the WWER-1000 reactor. A fuel assembly of infinite height with six U49G6-type U–Gd fuel rods used in large-capacity WWER-1000 fuel loads is simulated in the Serpent neutronic code. As a result of the calculations, U–Gd fuel rod arrangement with less uneven power density along the fuel assembly is selected, and the effect of the number of U–Gd fuel rods and their arrangement on reactivity is assessed. It is shown that the arrangement of U–Gd fuel rods in the fourth ring is optimal in terms of uneven power density per fuel rod and burnup. The effect of fuel assembly arrangement on the fuel burnup for individual groups of U–Gd fuel rods is considered. An option is proposed for reducing the cost of computing resources by identifying the groups of fuel rods with the greatest differences in power density and burnup. The studied assemblies are compared with the existing U49G6 fuel assembly. A method is proposed for estimating the underproduction of thermal energy in a fuel assembly due to the uneven burnup of fuel rods, while maintaining the maximum burnup for individual fuel rods. Based on the analysis of underproduction, an option is proposed for improving the fuel assembly layout with six U–Gd fuel rods to equalize the power density field and reduce unproductive fuel losses. For this purpose, enrichment in the first, second, and tenth fuel rod rings, counting from the central fuel assembly tube, can be reduced. As a result of such profiling, the burnup of the most burnt fuel rods in the fuel assembly can be reduced to 1.015 of the average burnup.

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来源期刊
Physics of Atomic Nuclei
Physics of Atomic Nuclei 物理-物理:核物理
CiteScore
0.60
自引率
25.00%
发文量
56
审稿时长
3-6 weeks
期刊介绍: Physics of Atomic Nuclei is a journal that covers experimental and theoretical studies of nuclear physics: nuclear structure, spectra, and properties; radiation, fission, and nuclear reactions induced by photons, leptons, hadrons, and nuclei; fundamental interactions and symmetries; hadrons (with light, strange, charm, and bottom quarks); particle collisions at high and superhigh energies; gauge and unified quantum field theories, quark models, supersymmetry and supergravity, astrophysics and cosmology.
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