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Thermal-Hydraulic Stability of Natural Circulation BWR under Startup - Flashing Effects

机译:自然循环的热液压稳定性初步循环BWR - 闪光效果

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To help achieve the necessary natural circulation flow, a fairly long chimney is installed in a boiling natural circulation reactor like the ESBWR. In such systems, thermal-hydraulic stability during low pressure start-up should be examined while considering the flashing induced by the pressure drop in the channel and the chimney due to gravity head. In this work, a BWR stability analysis code in the frequency domain, named FISTAB (Flashing-Induced STability Analysis for BWR), was developed to address the issue of flashing-induced instability. A thermal-hydraulics non-homogeneous equilibrium model (NHEM) based on a drift flux formulation along with a lumped fuel dynamics model is incorporated in the work. The vapor generation rate is derived from the mixture energy conservation equation while considering the effect of flashing. The functionality of the FISTAB code was confirmed by comparison to experimental results from SIRIUS-N facility at CRIEPI, Japan. Both stationary and perturbation results agree well with the experimental results.
机译:为了帮助实现必要的自然循环流动,将一个相当长的烟囱安装在沸腾的天然循环反应器中,如ESBWR。在这种系统中,应检查低压启动期间的热液压稳定性,同时考虑由引脚和烟囱引起的压力下降引起的闪烁而引起的闪烁。在这项工作中,开发了一个名为Fistab的频域中的BWR稳定性分析代码(BWR闪烁诱导的BWR),以解决闪烁引起的不稳定问题。基于漂移通量配方的热液压非均匀平衡模型(NHEM)并入了一流的燃料动力学模型。在考虑闪光效果的同时,蒸汽产生速率来自混合能量保守方程。通过与日本Criepi的Sirius-N设施的实验结果进行了确认福斯特采样的功能。静止和扰动结果都与实验结果很好。

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