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首页> 外文期刊>Nuclear Engineering and Design >Effects of tube rupture modeling and the parameters on the analysis of multiple steam generator tube rupture event progression in APR1400
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Effects of tube rupture modeling and the parameters on the analysis of multiple steam generator tube rupture event progression in APR1400

机译:管道破裂建模和参数对APR1400中多个蒸汽发生器管道破裂事件进程分析的影响

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摘要

A multiple steam generator tube rupture (MSGTR) event in APR1400 has been investigated using the best estimate thermal hydraulic system code, MARS 1.4. The effects of the parameters such as the number of ruptured tubes, rupture location, affected steam generator on the analysis of the MSGTR event in APR1400 are examined. In particular, tube rupture modeling methods, single tube modeling (STM) and double tube modeling (DTM), are compared. The APR1400 is found to have the capability of allowing more than 30 min to operators for the MSGTR event of five tubes. The effects of rapture location on the MSSV lift time is not significant in the case of STM, but the MSSV lift time for tube-top rupture is found to be 25.3% larger than that for rupture at the hot-leg side tube sheet in the case of DTM. The MSSV lift time for the cases that both steam generators are affected (4C5x, 4C23x) are found to be larger than that of the single steam generator cases (4A5x, 4B5x) due to a bifurcation of the primary leak flow. The discharge coefficient of Cd is found to affect the MSSV lift time only for a smaller value of 0.5. It is found that the most dominant parameter governing the MSSV lift time is the leak flow rate. Whether any modeling method is used, it gives the similar MSSV lift time if the leak flow rate is close, except in the case where both steam generators are affected. Therefore, the system performance and the MSSV lift time of the APR1400 are strongly dependent on the break flow model used in the best estimate system code.
机译:使用最佳估计的热力液压系统代码MARS 1.4,对APR1400中的多次蒸汽发生管破裂(MSGTR)事件进行了研究。检查了参数的影响,例如,破裂管的数量,破裂位置,受影响的蒸汽发生器对APR1400中MSGTR事件分析的影响。特别是,比较了管破裂建模方法,单管建模(STM)和双管建模(DTM)。 APR1400被发现能够为操作员提供30分钟以上的时间处理5根管的MSGTR事件。在STM的情况下,爆裂位置对MSSV举升时间的影响并不显着,但是发现管顶破裂的MSSV举升时间比热腿侧管板上的MSSV举升时间大25.3%。 DTM的情况。发现两个蒸汽发生器都受到影响的情况(4C5x,4C23x)的MSSV提升时间比单个蒸汽发生器情况(4A5x,4B5x)的要大,这是由于主要泄漏流的分叉。发现Cd的放电系数仅在较小值0.5时影响MSSV提升时间。发现控制MSSV提升时间的最主要参数是泄漏流量。无论是否使用任何建模方法,如果泄漏流量都接近,它会给出类似的MSSV提升时间,除非同时影响两个蒸汽发生器。因此,APR1400的系统性能和MSSV提升时间很大程度上取决于最佳估算系统代码中使用的中断流模型。

著录项

  • 来源
    《Nuclear Engineering and Design》 |2003年第3期|p.313-336|共24页
  • 作者

    Ji Hwan Jeong; Ki Yong Choi;

  • 作者单位

    Department of Environmental System, Cheonan College of Foreign Studies, Anseo-dong, Cheonan, Choongnam 330-705, South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 原子能技术;
  • 关键词

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