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首页> 外文期刊>Progress in Nuclear Energy >An estimate of the order of magnitude of the explosion during a core meltdown-compaction accident for heavy liquid metal fast reactors: A disquieting result updating the Bethe-Tait model
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An estimate of the order of magnitude of the explosion during a core meltdown-compaction accident for heavy liquid metal fast reactors: A disquieting result updating the Bethe-Tait model

机译:重型液态金属快堆堆芯熔化-压缩事故中爆炸数量级的估计:更新Bethe-Tait模型的令人不安的结果

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摘要

Criticality and recriticality considerations in heavy liquid metal fast reactors (HLMFRs) after a hypothetical core meltdown accident are discussed. Although many aspects of system behaviour in such scenarios can be deduced directly from the classical theory of sodium-cooled fast reactors (SFRs), certain ideas that have been accepted as true for SFRs cannot be extrapolated to HLMFRs without sufficiently careful thought. In this paper, we are concerned, as in SFRs, with fuel compaction, but with one important difference: there would be no boiling of the surrounding heavy liquid metal pool. Utilizing a Bethe-Tait model, it is shown that, due to the power flattening effect of the heavy liquid metal, explosive excursions at least an order of magnitude higher than for SFRs in similar situations are conceivable.
机译:讨论了假设的堆芯熔毁事故后重金属快堆(HLMFR)中的临界和不临界考虑因素。尽管可以从钠冷快堆(SFR)的经典理论直接推断出这种情况下系统行为的许多方面,但是如果没有足够仔细的考虑,就不能将某些已被认为对SFR正确的想法外推到HLMFR。在本文中,与SFR一样,我们关注的是燃料压缩,但有一个重要的区别:周围的重金属液池不会沸腾。利用Bethe-Tait模型表明,由于重金属液体的功率平坦化作用,在类似情况下,爆炸偏移至少比SFR高出一个数量级。

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