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Implementation of erbia with ZrB{sub}2 in 17×17 assemblies for a 4-loop core with a 24-month cycle

机译:使用24个月的40个循环的17×17组件中的Zrb {sub} 2的eRbia实现。

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There are many types of burnable absorbers currently used in power reactors. They are used to provide reactivity and power peaking control. Westinghouse reactors most commonly use Zirconium Diboride Integral Fuel Burnable Absorbers (ZrB{sub}2) while Combustion Engineering reactors most commonly use Erbia Integral Fuel Burnable Absorbers (Erbia) in Combustion Engineering reactors. This paper documents the study to determine the effect of placing Erbia and ZrB{sub}2 within a Westinghouse 17×17 fuel assembly, and the effect of these ZrB{sub}2/Erbia assemblies on the physics characteristics of a representative Westinghouse 4- loop, 24 month cycle length design. The study consisted first of producing optimal within-assembly burnable absorber configurations where 25% of the ZrB{sub}2-bearing fuel rods within an assembly were replaced with Erbia-bearing fuel rods. This ratio was selected in order to provide an effective balance between potential peaking factor improvements and the known Erbia disadvantage of increased residual absorber penalty compared with ZrB{sub}2. The optimal patterns were selected as the ones that most reduced the assembly-wise cumulative peak-to-average rod power during the depletion compared with existing all-ZrB{sub}2 BA configurations with the same BA rod quantity loading. The second part of this study consisted of substituting various quantities of these ZrB{sub}2/Erbia feed fuel assemblies in a representative Westinghouse 4-loop, 24 month cycle core design to study the effect on power peaking factors, moderator temperature coefficient (MTC), and cycle length.
机译:目前在电源反应堆中使用了许多类型的可燃吸收器。它们用于提供反应性和功率峰值控制。 Westinghouse反应堆最常用的是锆Diboride积分燃料可燃吸收器(Zrb {Sub} 2),而燃烧工程反应堆最常用的埃尔比亚积分燃料可燃吸收剂(埃尔比亚)在燃烧工程反应器中。本文记录了研究,确定将埃尔比亚和ZRB {Sub} 2在西屋17×17燃料组件中放置埃尔比亚和ZRB {Sub} 2的效果,以及这些ZRB {Sub} 2 /埃尔比亚组件对代表性屋的物理特征的影响4-循环,24个月循环长度设计。该研究首先由生产在组件内的25%的ZrB {亚} 2轴承燃料棒中产生最佳的内部燃烧吸收构型。用埃尔比亚的燃料棒代替。选择该比率以便在与ZRB {Sub} 2相比,在潜在的峰值因子改善和增加的残余吸收损失的缺点之间提供有效的平衡。选择最佳模式作为与具有相同BA杆量负载相同的All-ZRB {Sub} 2 BA配置的耗尽期间大多数耗尽的组装累积峰值平均杆功率。本研究的第二部分包括代替各种数量的这些ZRB {Sub} 2 /埃尔比亚饲料燃料组件在代表性的Westinghouse 4-Loop,24个月周期核心设计中,研究了对功率峰值因子的影响,主持人温度系数(MTC )和循环长度。

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