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A coarse-mesh methodology for modelling of single-phase thermal- hydraulics of ESFR innovative assembly design

机译:一种粗网格方法,用于建模ESFR创新装配设计的单相热液压

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摘要

The GeN-Foam multi-physics code enables coupled thermal-hydraulic, neutronic, and thermal-mechanical analysis of fast reactor cores with 3-D unstructured deformable meshes. Advances within the Horizon2020 ESFR-SMART project, as well as trends towards higher-fidelity core-wise simulations motivated further developments of the code thermal-hydraulics, based on a coarse-mesh porous medium approach. These developments enable the single-phase characterization of the thermal-hydraulic impact of the inter-assembly gap and assembly wrapper windows in steady state and transient scenarios. The inter-assembly gap constitutes a non-negligible heat sink in accident scenarios in most SFR designs. Conversely, wrapper windows are an ESFR innovative feature meant to alleviate the adverse effects of sodium boiling. However, these will alter the single-phase thermal-hydraulics as well. This work presents development and verification efforts aimed to enable the coarse-mesh thermal-hydraulic analysis of these features. An analysis of the impact of these features is performed on a representative bundle of 7 ESFR assemblies.
机译:GEN-FOAM多物理密码使耦合热液压,中子和热机械分析以及3D非结构化可变形网格的快速反应器芯。地平线2020 ESFR-SMART项目的进步,以及高保真核心模拟的趋势,基于粗麦形多孔介质方法,码热液压系统的进一步发展动机。这些开发使得在稳态和瞬态场景中的组装间隙和组装包装窗的热液压冲击的单相表征能够进行单相表征。组装间隙在大多数SFR设计中发生事故情景中的不可忽略的散热器。相反,包装窗是一个ESFR创新特征,意味着缓解沸腾的不利影响。但是,这些也将改变单相热液压。这项工作提出了开发和验证努力,旨在使这些特征的粗网热水 - 水力分析。对7 ESFR组件的代表性束进行这些特征的影响的分析。

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