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NUMERICAL SIMULATION OF THE SELF-LEVELING PHENOMENON BY MODIFIED SIMMER-HI

机译:改进的SIM-HI对自蔓延现象的数值模拟

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During a hypothetical core-disruptive accident in a sodium-cooled FBR, degraded core material can form debris beds on the core-support structure and/or in the lower inlet plenum of the reactor vessel, due to the rapid quenching and fragmentation of the core material melt. Heat convection and vaporization of the sodium will lead ultimately to leveling the debris bed that is of crucial importance to the relocation of the molten core, the recriticality evaluation and the heat removal capability of the debris bed. There is, therefore, a great need for more studies focusing on this topic, especially the much needed numerical simulation. The widely-used fast reactor safety analysis code, SIMMER-III, has difficulties in this simulation because of the lack of modeling for mechanistic interactions among particles in the current version. However, the extensive experimental analysis and the previously-proposed analytical model provide SIMMER-III the possibility of taking consideration of the extra influence of solid particles in this phenomenon. Thus, the debris fluidization model and the boiling regulation model are proposed and introduced into SIMMER-III. Calculations, by the modified SIMMER-III, against several representative experiments with typical self-leveling behavior have been performed and compared with the evaluated items recorded in experiments. The good agreements on these items suggest the modified SIMMER-III can simulate the self-leveling behavior with reasonable precision, especially on the onset of self-leveling, although further model improvement is necessary to represent the transient behavior of bed leveling more reasonably.
机译:在钠冷却的FBR中发生假想的堆芯破坏事故期间,由于堆芯的快速淬火和破碎,降解的堆芯材料可能在堆芯支撑结构上和/或在反应堆容器的下部进气室中形成碎屑床。材料融化。钠的热对流和汽化最终将导致碎片床的整平,这对于熔融核芯的重新定位,重新临界性评估和碎片床的除热能力至关重要。因此,非常需要针对该主题的更多研究,尤其是急需的数值模拟。由于当前版本中缺少粒子间机械相互作用的建模,因此广泛使用的快速反应堆安全分析代码SIMMER-III在此模拟中遇到了困难。但是,广泛的实验分析和先前提出的分析模型为SIMMER-III提供了考虑固体颗粒在此现象中产生的额外影响的可能性。因此,提出了泥石流化模型和沸腾调节模型并将其引入SIMMER-III。通过改进的SIMMER-III,针对具有典型自流平行为的几个代表性实验进行了计算,并与实验中记录的评估项目进行了比较。在这些项目上达成的良好协议表明,改进的SIMMER-III可以以合理的精度模拟自流平行为,特别是在自流平开始时,尽管需要进行进一步的模型改进以更合理地表示床平整的瞬态行为。

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