首页> 外文会议>Annual conference of the Canadian Nuclear Society;CNS/CNA student conference >OPTIMIZATION OF TIME-AVERAGE CALCULATIONS IN CANDU FUEL MANAGEMENT USING SIMULATED ANNEALING: MINIMIZATION OF MAXIMUM BUNDLE AND CHANNEL POWERS
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OPTIMIZATION OF TIME-AVERAGE CALCULATIONS IN CANDU FUEL MANAGEMENT USING SIMULATED ANNEALING: MINIMIZATION OF MAXIMUM BUNDLE AND CHANNEL POWERS

机译:使用模拟退火优化Candu燃料管理中的时间平均计算:最大束和通道功率的最小化

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摘要

The time-average approach has been extensively used in CANDU fuel management, especially during the design phase, to represent an average behavior in the equilibrium core after a long period of operation. During the design process, this approach could be utilized for designing the distribution of reactivity control devices, the distribution of various in-core detectors, and the overall shape of power distribution. This paper presents an alternative approach to create a time-average core through an optimization process which has been implemented through an algorithm called SANTAN (Simulated ANnealing for Time-Average calculatioN). In the current implementation, the objective of the optimization is to minimize the maximum bundle and channel powers in the core. The SANTAN algorithm is valuable in helping a new core designer who would like to create a time-average core from scratch. Presented in this paper are results from utilizing this algorithm on different number of target exit irradiation regions.
机译:时间平均方法已在CANDU燃料管理中广泛使用,尤其是在设计阶段,以表示长时间运行后平衡芯中的平均行为。在设计过程中,此方法可用于设计反应性控制设备的分布,各种核内探测器的分布以及功率分布的整体形状。本文提出了一种通过优化过程创建时间平均核的替代方法,该优化过程已通过称为SANTAN(时间平均计算的模拟退火)的算法实现。在当前的实现中,优化的目的是最小化核心中的最大捆绑和信道功率。 SANTAN算法对于帮助希望从头开始创建时间平均内核的新内核设计人员而言非常有价值。本文提出的是在不同数量的目标出射照射区域上使用该算法的结果。

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