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Steam Explosion Experiments Using Nuclear Reactor Materials in the TROI Facilities

机译:在TROI设施中使用核反应堆材料进行蒸汽爆炸实验

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A series of TROI steam explosion experiments was performed using various prototypic melts. The melt was pure zirconia, eutectic corium (70: 30 weight percent of UO_2: ZrO_2) or iron-added eutectic corium. In this series, an experiment with pure zirconia, two experiments with eutectic corium, and three experiments with iron-added corium were carried out. A steam explosion was found to be somewhat related to the melt composition and an external triggering. As with most of the previous tests, zirconia melt led to a steam explosion again. It is quite certain that a zirconia melt will more than likely result in an energetic steam explosion. Meanwhile, eutectic corium led to an energetic steam explosion by applying an external trigger, but it had a weak steam spike without an external trigger. The explosivity of eutectic corium cannot be ignored, as an external trigger led to an energetic steam explosion. Iron-added corium did not lead to an energetic steam explosion. The reason for this is likely to be a relatively low melt temperature (superheat) when compared to zirconia melt or oxidic corium melt, resulting from the melting method used in the TROI experiments, an induction heating applied to a cold crucible. The iron-added corium at a low temperature was solidified easily so a steam explosion did not occur.
机译:使用各种原型熔体进行了一系列的TROI蒸汽爆炸实验。熔体是纯氧化锆,低共熔皮质(70:30%重量的UO_2:ZrO_2)或含铁的低共熔皮质。在该系列中,进行了纯氧化锆的实验,共晶皮质的两个实验和添加铁的皮质的三个实验。发现蒸汽爆炸与熔体组成和外部触发有关。与大多数以前的测试一样,氧化锆熔体再次导致蒸汽爆炸。可以肯定的是,氧化锆熔体很有可能导致高能蒸汽爆炸。同时,共晶皮质通过使用外部触发器导致了高能蒸汽爆炸,但没有外部触发器时蒸汽峰值很弱。共晶皮质的爆炸性不容忽视,因为外部触发导致了高能蒸汽爆炸。添加铁的皮质素不会导致高能蒸汽爆炸。与氧化锆熔体或氧化皮质熔体相比,这可能是由于较低的熔体温度(过热)所致,这是由于TROI实验中使用的熔炼方法,感应加热应用于冷坩埚而引起的。低温下的含铁皮质容易固化,因此不会发生蒸汽爆炸。

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