首页> 外文会议>Conference on physics of reactors >VALIDATION OF THE NEWLY IMPLEMENTED 3D TDT-MOC SOLVER OF APOLLO3~® CODE ON A WHOLE 3D SFR HETEROGENEOUS ASSEMBLY
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VALIDATION OF THE NEWLY IMPLEMENTED 3D TDT-MOC SOLVER OF APOLLO3~® CODE ON A WHOLE 3D SFR HETEROGENEOUS ASSEMBLY

机译:新实现的APOLLO3〜®代码的3D TDT-MOC解算器在整个3D SFR异质组件上的验证

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A three-dimensional (3D) axial capabilities have been recently implemented in the TDT-MOC solver (Method of Characteristics solver), module of the French deterministic core physics analysis code APOLLO3~® currently under development. This solver has already been validated on a two plans hexagonal sub-assembly test-case and showed quite good performances. In the framework of the ASTRID project, the CFV core presents strong heterogeneities, on both radial and axial directions, that are not treated correctly with the usual 2D solvers. The aim of this paper is to quantify the approximation made with non-fully-representative 2D cluster geometries by using the 3D TDT-MOC solver on a whole 3D heterogeneous CFV sub-assembly. Results obtained with 3D TDT-MOC are compared and validated using the continuous energy Monte-Carlo TRIPOLI-4~® code and are discussed. Improvements, mainly focus on the homogenization and energy-collapsing methods, are also pointed out.
机译:最近在TDT-MOC求解器(“特性求解器”)中实现了三维(3D)轴向能力,该函数是法国确定性核心物理分析代码APOLLO3〜®的模块,目前正在开发中。该求解器已经在两个计划的六角形子装配测试用例上得到了验证,并显示出相当不错的性能。在ASTRID项目的框架中,CFV核心在径向和轴向上都表现出很强的异质性,而通常的2D求解器无法正确处理这些异质性。本文的目的是通过在整个3D异构CFV子组件上使用3D TDT-MOC解算器来量化由非完全代表2D簇几何体得出的近似值。使用连续能量Monte-CarloTRIPOLI-4®代码对3D TDT-MOC获得的结果进行比较和验证,并进行了讨论。还指出了改进措施,主要集中在均质化和能量折叠方法上。

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