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Formation, characterisation and cooling of debris Scenario discussion with emphasis on TMI-2

机译:讨论TMI-2的碎片的形成,表征和冷却方案讨论

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摘要

Regarding safety improvements for existing nuclear power plants, the TMI-2 accident is interesting because of the present commercial dominance of light water reactors (LWR). This accident demonstrated that the nuclear safety philosophy evolved over the years has to cover accident sequences involving massive core melt progression in order to develop reliable mitigation strategies for both, existing and advanced reactors. Although the TMI-2 core was reflooded, the results also appear applicable to the general melt progression phenomenology of most unrecovered (unreflooded) blocked core accident scenarios. Nevertheless, a large range in the initial conditions of core melt progression provides significant uncertainties in assessing the integrity of the lower head, the containment in severe reactor accidents, and the consequences of recovery actions in accident management, as well as core reflooding in particular. The probability of success of reflooding as an accident management strategy - in-vessel reflooding to terminate the accident and ex-vessel flooding to prevent reactor vessel melt-through - has to be assessed and discussed in detail.
机译:关于现有核电厂的安全改进,由于目前轻水反应堆(LWR)在商业上占主导地位,TMI-2事故引起了人们的兴趣。这次事故表明,多年来发展起来的核安全理念必须涵盖涉及大量堆芯熔化的事故序列,以便为现有和先进反应堆开发可靠的缓解策略。尽管对TMI-2岩心进行了重新注水,但该结果似乎也适用于大多数未采出(未重新注水)的阻塞性核心事故场景的一般融化进展现象。然而,堆芯融化进展的初始条件范围很大,在评估下水头的完整性,严重的反应堆事故中的密闭性,事故管理中的恢复行动后果以及特别是堆芯回注方面,存在很大的不确定性。重新评估作为事故管理策略成功的可能性-船内重新灌注以终止事故和船前洪水以防止反应堆容器融化-必须详细评估和讨论。

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