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Estimation of graphite density and mechanical strength variation of VHTR during air-ingress accident

机译:气浮事故中VHTR的石墨密度和机械强度变化的估算

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This study focuses on predicting the changes in graphite density and mechanical strength in VHTR during the air-ingress accident via thermal hydraulic system analysis code. A simple graphite burn-off model was developed based on the similarities between a parallel electrical circuit and graphite oxidation. The developed model along with other comprehensive graphite oxidation models were integrated into the VHTR system analysis code, GAMMA. GT-MHR 600 MW t reactor was selected as a reference reactor. Based on the calculation, the main oxidation process was observed 5.5 days after the accident when followed by natural convection. The core maximum temperature reached 1430 ℃, but never exceeded the maximum temperature criteria, 1600 ℃. However, the oxidation process did significantly decrease the density of bottom reflector, making it vulnerable to mechanical stress. The stress on the bottom reflector is greatly increased because of the reduction of loaded surface area with graphite oxidation. The calculation proceeded until 11 days after the accident, resulting in an observed 4.5% decrease in density and a 25% reduction of mechanical strength.
机译:这项研究的重点是通过热液压系统分析代码预测在进气事故期间VHTR中石墨密度和机械强度的变化。基于并联电路与石墨氧化之间的相似性,开发了一个简单的石墨燃尽模型。已开发的模型以及其他全面的石墨氧化模型已集成到VHTR系统分析代码GAMMA中。选择GT-MHR 600 MW t反应堆作为参考反应堆。根据计算,事故发生5.5天后进行自然对流,观察到主要氧化过程。磁芯最高温度达到1430℃,但从未超过最高温度标准1600℃。但是,氧化过程确实显着降低了底部反射镜的密度,使其容易受到机械应力的影响。底部反射器上的应力会大大增加,因为石墨氧化会减少加载的表面积。计算一直持续到事故发生后的11天,结果观察到密度降低了4.5%,机械强度降低了25%。

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