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Effect of the burnable absorber arrangement on the VVER-1200 fuel assembly neutronic performance

机译:可燃吸收器布置对Vver-1200燃料组件中子性能的影响

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Optimizing the use of fuel in a power reactor is a task of current concern. However, little attention has been given to investigating the dependences among the enrichment used, the content of gadolinium oxide in fuel elements, and the life time in combination with assessing the efficiency of using Gd fuel elements with different Gd2O3 contents. The paper considers fuel assembly (FA) versions for VVER-1200 reactors having different enrichments for fuel elements, including those with Gd, and different contents of gadolinium oxide in fuel. A comparative analysis is presented for assemblies with homogeneous Gd2O3 arrangements in each fuel element and with profiled Gd2O3 arrangements. In the latter case, profiling depends on the neutron flux density in the layer which includes Gd fuel elements. This suggests that the arrangement of gadolinium oxide proportionally to the neutron flux density will improve the FA neutronic performance. The results were obtained using SERPENT (a continuous-energy multi-purpose three-dimensional Monte Carlo particle transport code). The assemblies with the used parameters for a 12-month fuel cycle have shown the method under consideration to be inefficient for a period of over 300 eff. days. With increased enrichment and content of gadolinium oxide, the use of profiled versions has turned out to be more rational for longer periods (up to 900 eff. days). Therefore, this phenomenon is relevant for the reactor life, whereas it proves to be insignificant for the fuel life. A complex relationship is noted between the gadolinium and uranium content in an assembly and the effective multiplication factor for the profiled and standard assemblies. This relationship requires further detailed consideration.
机译:优化电力反应堆中的燃料使用是当前问题的任务。然而,已经注意到研究使用的富集中使用的富集的依赖性,燃料元件中的氧化钆的含量以及寿命时间结合评估了使用不同GD2O3内容物的使用Gd燃料元件的效率。该论文考虑了具有不同富含燃料元件富集的VVER-1200反应器的燃料组件(FA)版本,包括具有GD的燃料和燃料中的氧化钆的不同含量。为每个燃料元件中具有均匀GD2O3布置的组件和具有异形GD2O3布置的组件的比较分析。在后一种情况下,分析取决于包括GD燃料元件的层中的中子磁通密度。这表明氧化钆的布置与中子磁通密度成比例地将提高FA中型性能。使用蛇(连续能量多用途三维Monte Carlo粒子传输代码获得结果。对于12个月的燃料循环的使用参数的组件已经显示出在300倍效率的时间内所考虑的方法效率低下。天。随着富集氧化钆的富集和含量增加,使用异形型型号已经变得更加合理,对于更长的时间(最多900 eff。天)。因此,这种现象与反应堆寿命有关,而它证明是对燃料寿命微不足道的。在组装中的钆和铀含量和成型和标准组件的有效乘法因子之间,在钆和铀含量之间注意到复杂的关系。这种关系需要进一步详细考虑。

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