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Use of Meta-Heuristics for Design of Fuel Loading Pattern in light water Reactors comprising some Radial and Axial Heterogeneities

机译:使用径向和轴向异质性的轻水反应器中燃料加载图案设计的Meta-heuistics

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The third generation nuclear core should be attractive from the nuclear fuel cycle management aspect. The main goal is to achieve a good conversion of fertile isotopes into fissile isotopes while respecting safety constraints. Preliminary studies have shown the interest of the core loaded with fertile and heterogeneous fissile assemblies. The purpose of this work is to find out an optimized loading pattern and axial repartition of fissile and fertile elements in regards to the following criteria: power peak and void coefficient minimization. Due to the huge number of possible combinations, we have replaced the global optimization by two simple forms: first optimization of the fertile/fissile repartitions on an assembly in 1D representation, and secondly optimization of the core's loading pattern in 3D representation. The evaluations of the criteria have been done using the neutron physics transport solver MINOS integrated in the new lattice-core APOLLO3 code. The research algorithms used in this study are of an evolutionary algorithm, a "Max Min ant system colony algorithm" and a particle swarm adapted to our multi criteria approach. These algorithms are distributed using the heterogeneous island's method. A second level of parallelism has been introduced inside each island. Therefore we could increase the number of evaluations while respecting the CPU time limitation of the batch queues available. There are several solutions that stand out from the simulations. Some of them are completely original and have proved to be relevant a posteriori. This method could then be used as a decision support tool for the exploitation reactors and also for the design of new reactors.
机译:第三代核核心应从核燃料循环管理方面具有吸引力。主要目标是在尊重安全限制的同时,实现肥沃同位素的良好转化为裂变同位素。初步研究表明核心含有肥沃和异质裂变组件的兴趣。这项工作的目的是找出关于以下标准的裂变和肥沃元件的优化装载模式和轴向重置,以及功率峰值和空隙系数最小化。由于可能的组合数量巨大,我们通过两种简单的形式取代了全局优化:首先优化1D表示中的组件上的肥沃/裂缝重置,并在3D表示中的核心装载模式的优化。通过集成在新的格里核心Apollo3代码中的中子物理运输求解器Mino来完成标准的评估。本研究中使用的研究算法是一种进化算法,“最大MIN ANT系统殖民地算法”和适用于我们多标准方法的粒子群。这些算法使用异构岛的方法分发。每个岛屿都引入了第二级并行性。因此,我们可以增加评估的数量,同时尊重可用批量队列的CPU时间限制。有几种解决方案从模拟中脱颖而出。其中一些是完全原创的,已被证明是相关的后验。然后,该方法可以用作开发反应堆的决策支持工具,也可以用于设计新的反应器。

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