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Uncertainty analysis of one Main Circulation Pump trip event at the Ignalina NPP

机译:伊格纳利纳核电站一次主循环泵跳闸事件的不确定性分析

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One Main Circulation Pump trip event is an anticipated transient with expected frequency of approximately one event per year. There were a few events when one MCP was inadvertently tripped. The throughput of the rest running pumps in the affected Main Circulation Circuit loop increased, however, the total coolant flow through the affected loop decreased. The main question arises whether this coolant flow rate is sufficient for adequate core cooling. This paper presents an investigation of one MCP trip event at the Ignalina NPP. According to international practice, the transient analysis should consist of deterministic analysis by employing best-estimate codes and uncertainty analysis. For that purpose, the plant's RELAP5 model and the GRS (Germany) System for Uncertainty and Sensitivity Analysis package (SUSA) were employed. Uncertainty analysis of flow energy loss in different parts of the Main Circulation Circuit, initial conditions and code-selected models was performed. Such analysis allows to estimate the influence of separate parameters on calculation results and to find the modelling parameters that have the largest impact on the event studied. On the basis of this analysis, recommendations for the further improvement of the model have been developed.
机译:一个主循环泵跳闸事件是一种预期的瞬态,其预期频率约为每年一次。发生了几起事件,其中一个MCP意外跳闸。受影响的主循环回路中其余运行泵的流量增加,但是,通过受影响的回路的总冷却液流量却减少了。提出了主要问题,该冷却剂流速是否足以进行足够的芯冷却。本文介绍了对Ignalina NPP发生的一次MCP跳闸事件的调查。根据国际惯例,瞬态分析应包括采用最佳估计代码的确定性分析和不确定性分析。为此,采用了工厂的RELAP5模型和用于不确定性和敏感性分析程序包(SUSA)的GRS(德国)系统。进行了主循环回路不同部分的流动能量损失,初始条件和代码选择模型的不确定性分析。这样的分析可以估计单独参数对计算结果的影响,并找到对所研究事件影响最大的建模参数。在此分析的基础上,提出了进一步改进模型的建议。

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