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首页> 外文期刊>Journal of nuclear science and technology >The Post-Test Analyses of CCTF C2-4 using TRAC-M and RELAP Codes Code Modeling Capability on the Downcomer Boiling
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The Post-Test Analyses of CCTF C2-4 using TRAC-M and RELAP Codes Code Modeling Capability on the Downcomer Boiling

机译:使用TRAC-M和RELAP代码对降液管沸腾进行代码建模的能力对CCTF C2-4进行后测试分析

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摘要

The void generation in downcomer during the late reflood phase and its effect on overall transient is evaluated using the post test analyses of the CCTF C2-4 (Run 62) experiment. C2-4 test, which was performed at JAERI, is a reflood test for the typical Westinghouse 4 loop plants. TRAC-M and RELAP 3.2.2_γ codes are chosen in this study. Results show that both codes overpredict downcomer water level reduction. To examine the sensitivity of the interfacial drag model in the downcomer region, Blasius model option is selected for TRAC-M for the sensitivity study. Also, Blasius model is implemented in RELAP code. The sensitivity runs using Blasius model show that it enhances the steam venting in the downcomer. With the Blasius interfacial drag model, both codes show a good agreement with the experiment for downcomer level. Fuel cladding temperatures predicted by the codes are still higher than the measured data.
机译:使用CCTF C2-4(试验62)实验的后期测试分析,评估了后期泄洪阶段降液管中产生的空隙及其对整体瞬态的影响。在JAERI进行的C2-4测试是对典型的Westinghouse 4回路工厂的翻新测试。在这项研究中选择了TRAC-M和RELAP3.2.2_γ代码。结果表明,这两个代码都高估了下降管水位的降低。为了检查下导管区域的界面阻力模型的敏感性,为TRAC-M选择了Blasius模型选项进行敏感性研究。而且,Blasius模型以RELAP代码实现。使用Blasius模型运行的灵敏度表明,它增强了降液管中的蒸汽排放。使用Blasius界面阻力模型,两个代码在降液管水平上均与实验显示出良好的一致性。编码预测的燃料包壳温度仍高于实测数据。

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