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Development and verification of pin-by-pin homogenized simplified transport solver Tortin for PWR core analysis

机译:PWR核心分析的PIN型均质均质简化传输辅导仪的开发和验证

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Currently, the pin-by-pin homogenized solvers are a very active research field as they can, unlike the nodal codes, directly predict the local power, while requiring significantly less computational resources than the heterogeneous transport codes. This paper presents a recently developed pin-by-pin diffusion/SP3 solver Tortin, its spatial discretization method and the reflector treatment. Regarding the spatial discretization, it was observed that the finite difference method applied on pin-cell size mesh does not properly capture the big flux change between MOX and uranium fuel, while the nodal expansion method is more accurate but too slow. If the finite difference method is used with a finer mesh in the outer two pin rows of the fuel assembly, it increases the required computation time by only 50%, but decreases the pin power errors below 1% with respect to lattice code reference solutions. The paper further describes the coupling of Tortin with a microscopic depletion solver. Several verification tests show that the SP3 pin-by-pin solver can reproduce the heterogeneous transport solvers results with very good accuracy, even for fuel cycle depletion of very heterogeneous core employing MOX fuel or inserted control rods, while being two orders of magnitude faster.
机译:目前,与节点代码不同,引脚均匀均质溶解器是一个非常活跃的研究领域,直接预测本地功率,同时需要比异构传输代码明显更少的计算资源。本文介绍了最近开发的引脚扩散/ SP3求解器曲线,其空间离散化方法和反射器处理。关于空间离散化,观察到应用于销细胞尺寸网的有限差分方法不适当地捕获MOX和铀燃料之间的大量通量变化,而Nodal膨胀方法更准确但过于慢。如果有限差分方法与燃料组件的外部两个引脚行中的更精细的网格一起使用,则它将所需的计算时间仅增加50%,但相对于格子码参考解决方案,降低了1%以下的引脚功率误差。本文进一步描述了叉汀与微观耗尽求解器的耦合。若干验证测试表明,即使对于使用MOX燃料或插入的控制杆的非常异质芯的燃料循环耗尽,SP3逐针求解器也可以再现异质传输溶剂,从而为非常异质的芯的燃料循环耗尽。

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