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Environment-Based Pin-Power Reconstruction Method for Homogeneous Core Calculations

机译:基于环境的均匀核心计算的PIN功率重构方法

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Core calculation schemes are usually based on a classical two-step approach associated with assembly and core calculations. During the first step, infinite lattice assemblies calculations relying on a fundamental mode approach are used to generate cross-sections libraries for PWRs core calculations. This fundamental mode hypothesis may be questioned when dealing with loading patterns involving several types of assemblies (UOX, MOX), burnable poisons, control rods and burn-up gradients. This paper proposes a calculation method able to take into account the heterogeneous environment of the assemblies when using homogeneous core calculations and an appropriate pin-power reconstruction. This methodology is applied to MOX assemblies, computed within an environment of UOX assemblies. The new environment-based pin-power reconstruction is then used on various clusters of 3x3 assemblies showing burn-up gradients and UOX/MOX interfaces, and compared to reference calculations performed with APOLLO-2. The results show that UOX/MOX interfaces are much better calculated with the environment-based calculation scheme when compared to the usual pin-power reconstruction method. The power peak is always better located and calculated with the environment-based pin-power reconstruction method on every cluster configuration studied. This study shows that taking into account the environment in transport calculations can significantly improve the pin-power reconstruction so far as it is consistent with the core loading pattern.
机译:核心计算方案通常基于与装配和核心计算相关的经典两步方法。在第一步中,依赖于基本模式方法的无限晶格组件计算用于生成PWR核心计算的横截面库。在处理涉及几种类型的组件(UOX,MOX),可燃毒物,控制杆和烧坏梯度的装载模式时可能会质疑这种基本模式假设。本文提出了一种能够考虑使用均匀核心计算时组件的异构环境的计算方法和适当的引脚功率重建。该方法应用于MOX组件,在UOX组件的环境中计算。然后将新的基于环境针功率重建上使用的3×3组件表示燃耗梯度和UOX / MOX接口的各种集群,并相比于具有APOLLO-2中执行的参考计算。结果表明,与通常的引脚功率重建方法相比,UOX / MOX接口大大计算了基于环境的计算方案。功率峰值始终更好,并在研究的每个集群配置上使用基于环境的PIN功率重建方法计算。本研究表明,考虑到运输计算中的环境可以显着改善引脚功率重建,只要它与核心装载模式一致。

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