首页> 外文会议>International Conference on Nuclear Engineering >A NUMERICAL SIMULATION METHOD FOR CORE INTERNALS BEHAVIOR IN SEVERE ACCIDENT CONDITIONS: CHEMICAL REACTION ANALYSES IN CORE STRUCTURES BY JUPITER
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A NUMERICAL SIMULATION METHOD FOR CORE INTERNALS BEHAVIOR IN SEVERE ACCIDENT CONDITIONS: CHEMICAL REACTION ANALYSES IN CORE STRUCTURES BY JUPITER

机译:严重事故条件下核心内部行为的数值模拟方法:木星核心结构中的化学反应分析

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In order to contribute the improvement of estimation accuracy for severe accident code such as SAMPSON, we haw developed the chemical reaction model such as eutectic reaction and oxidation in micro scale, e.g., B_4C-SUS in the control rod blade and UO_2-Zry in fuel rods, and implemented them to the computational fluid dynamics code named JUPITER. And we try to develop the coupled analysis frame work using SAMPSON and JUPITER to decrease uncertainty due to micro scale phenomena which cannot be calculate by severe accident analysis codes. From the preliminary analysis in fuel rod heating analysis by JUPITER using SAMPSON output data, it was revealed that the implemented chemical reaction models work stably and obtain reasonable results.
机译:为了提高严重事故代码的估计精度,例如SAMPSON,我们开发了微刻度的化学反应模型,例如微尺度反应和氧化,例如,在控制杆叶片中的B_4C-SUS和燃料中的UO_2- Zry棒,并将其实施到名为Jupiter的计算流体动力学代码。我们尝试使用Sampson和Jupiter开发耦合分析框架工作,以减少由于微尺度现象而无法通过严重事故分析代码计算的不确定性。从Jupiter使用Sampson输出数据的燃油棒加热分析的初步分析,揭示了所实施的化学反应模型稳定地效果并获得合理的结果。

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