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首页> 外文期刊>Annals of nuclear energy >Improvement of ATHLET modelling capability for asymmetric natural circulation phenomenon using uncertainty and sensitivity measures
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Improvement of ATHLET modelling capability for asymmetric natural circulation phenomenon using uncertainty and sensitivity measures

机译:使用不确定性和敏感性测度来提高非对称自然循环现象的ATHLET建模能力

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Natural circulation is one of the most important phenomena relating to nuclear reactor safety. In the last years of 20th century, lots of test facilities were set up to conduct natural circulation experiments. At the same time, some system codes, such as RELAP5 and CATHARE, have been validated by the experimental data carried out by these facilities. The calculation results show that these codes can capture most of the characters during the natural circulation transient, except some special processes. One of the examples is PKL IIIB3.1 test, an asymmetric natural circulation transient in the primary loop with an isolated steam generator. The cooled down process using the intact steam generators by reducing the secondary side pressure is the driving force of the natural circulation in primary loop. In this paper, a post-test calculation is performed by best-estimate thermal-hydraulic code ATHLET to simulate PKL IIIB3.1 test. Due to the effect of isolated steam generator on the whole primary cooling system, the results show that the mass flow in the isolated loop is overpredicted significantly comparing to the experimental data. Many measures have been tried to improve the simulation results, but an effective method is still missing. Based on the post-test calculation results, an uncertainty and sensitivity analysis is carried out to find out the main reason causing this higher circulation mass flow. Lots of factors are considered-in this study, e.g. the boundary conditions, thermal-hydraulic correlations, and model parameters. The most sensitive factors are selected and adopted to improve the simulation modelling. The results achieved so far indicate that with these measures, the ATHLET capability for the asymmetric natural circulation phenomenon is effectively improved.
机译:自然循环是与核反应堆安全有关的最重要现象之一。在20世纪的最后几年,建立了许多测试设施来进行自然循环实验。同时,一些系统代码(例如RELAP5和CATHARE)已通过这些设施执行的实验数据进行了验证。计算结果表明,这些代码可以捕获自然循环瞬变过程中的大多数字符,除了一些特殊过程。示例之一是PKL IIIB3.1测试,这是在主回路中使用隔离蒸汽发生器的非对称自然循环瞬变。使用完整的蒸汽发生器通过降低次级侧压力进行的冷却过程是初级回路中自然循环的驱动力。在本文中,通过最佳估计的热工代码ATHLET进行后测试计算,以模拟PKL IIIB3.1测试。由于隔离式蒸汽发生器对整个一次冷却系统的影响,结果表明,与实验数据相比,隔离式环路中的质量流量被过度预测。已经尝试了许多措施来改善仿真结果,但是仍然缺少有效的方法。根据测试后的计算结果,进行不确定度和灵敏度分析,以找出造成这种较高循环质量流量的主要原因。在这项研究中考虑了许多因素,例如边界条件,热工相关性和模型参数。选择并采用最敏感的因素来改善仿真建模。迄今为止取得的结果表明,通过这些措施,有效地提高了非对称自然循环现象的ATHLET能力。

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