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首页> 外文期刊>Nuclear engineering and technology >ANALYSIS OF THE ISP-50 DIRECT VESSEL INJECTION SBLOCA IN THE ATLAS FACILITY WITH THE RELAP5/MOD3.3 CODE
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ANALYSIS OF THE ISP-50 DIRECT VESSEL INJECTION SBLOCA IN THE ATLAS FACILITY WITH THE RELAP5/MOD3.3 CODE

机译:使用RELAP5 / MOD3.3代码对Atlas设备中的ISP-50直接血管注入SBLOCA进行分析

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摘要

The pressurized water reactor APR 1400 adopts DVI (Direct Vessel Injection) for the emergency cooling water in the upper downcomer annulus. The International Standard Problem number 50 (ISP-50) was launched with the aim to investigate thermal hydraulic phenomena during a 50% DVI line break scenario with best estimate codes making use of the experimental data available from the ATLAS facility located at KAERI. The present work describes the calculation results obtained for the ISP-50 using the RELAP5/MOD3.3 system code. The work aims at validation and assessment of the code to reproduce the observed phenomena and investigate about its limitations to predict complicated mixing phenomena between the subcooled emergency cooling water and the two-phase flow in the downcomer. The obtained results show that the overall trends of the main test variables are well reproduced by the calculations. In particular, the pressure in the primary system show excellent agreement with the experiment. The loop seal clearance phenomenon was observed in the calculation and it was found to have an important influence on the transient progression. Moreover, the collapsed water levels in the core are accurately reproduced in the simulations. However, the drop in the downcomer level before the activation of the DVI from safety injection tanks was underestimated due to multi-dimensional phenomena in the downcomer that are not properly captured by one-dimensional simulations.
机译:压水堆APR 1400采用DVI(直接容器注入)作为上降液管环空中的应急冷却水。推出了国际标准问题编号50(ISP-50),目的是利用位于KAERI的ATLAS设施中的实验数据,以最佳估算代码调查50%DVI线路中断情况下的热液现象。本工作描述了使用RELAP5 / MOD3.3系统代码为ISP-50获得的计算结果。这项工作旨在验证和评估代码,以重现观察到的现象,并研究其局限性,以预测过冷的紧急冷却水和降液管中的两相流之间的复杂混合现象。获得的结果表明,通过计算可以很好地再现主要测试变量的总体趋势。特别是,一次系统中的压力与实验非常吻合。在计算中观察到回路密封间隙现象,并且发现其对瞬态进程具有重要影响。此外,在模拟中可以准确地再现岩心中坍塌的水位。但是,由于降液管中的多维现象没有被一维模拟正确捕获,因此从安全注入箱激活DVI之前降液管水平的下降被低估了。

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