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Multi-dimensional pool analysis of Phenix end-of-life natural circulation test with MARS-LMR code

机译:使用MARS-LMR代码对Phenix寿命终了自然循环测试进行多维池分析

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摘要

The MARS-LMR code is a key system analysis tool for the development of a sodium-cooled fast reactor in Korea. The code has been successfully applied for the transient analysis of conceptual designs of SFR since 2007 mainly based on a one-dimensional approach. In recent studies, it was identified that one-dimensional modeling of a pool-type SFR has limitations on describing complicated thermal-hydraulic phenomena in pool regions at natural circulation conditions. In the present study, the natural circulation test performed in Phenix reactor by CEA has been analyzed with a multi-dimensional approach of MARS-LMR. Only the hot pool and the cold pool regions are modeled multi-dimensionally and other parts of the plant are described one-dimensionally in the analysis. Even though a very careful treatment of initial flow condition is required, this multi-dimensional modeling of pool regions results in quite accurate prediction of the temperature distributions measured at several points during the test when it is compared to the results with one-dimensional pool nodalization. It is suggested that a detailed modeling of pool regions is essential for the future analysis of pool-type SFRs. The multi-dimensional modeling capability can be enhanced through the improvement of the existing system code or by the combination of system code and CFD code.
机译:MARS-LMR代码是韩国开发钠冷快堆的关键系统分析工具。自2007年以来,该代码主要基于一维方法已成功地应用于SFR概念设计的瞬态分析。在最近的研究中,已确定池型SFR的一维建模在描述自然循环条件下池区中复杂的热工现象方面存在局限性。在本研究中,已使用MARS-LMR的多维方法分析了CEA在Phenix反应堆中进行的自然循环测试。在分析中,只有热池和冷池区域是多维建模的,而工厂的其他部分则是一维描述的。即使需要非常仔细地处理初始流量条件,当与一维水池结点结果进行比较时,对水池区域的多维建模仍可以非常准确地预测测试过程中几个点处测得的温度分布。建议对池区SFR的未来分析至关重要的池区域的详细建模。多维建模能力可以通过现有系统代码的改进或系统代码和CFD代码的组合来增强。

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