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Development of a mitigation system against hydrogen-air deflagrations in nuclear power plants

机译:核电站氢气脱晶的缓解系统的发展

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摘要

A novel mitigation system against hydrogen-air deflagrations in nuclear power plant buildings is proposed and developed through a series of field experiments using explosion vessels of different volume sizes. The mitigation system is installed on the outer surface of the vessels, and it comprises flame arrester and explosion air bag. The flame arrester is made by stacking 10-20 sheets of fine-mesh wire screens, and the air bag is connected for holding explosion gas. The successful mitigation mechanism is the sequence of pressure-rise reduction by the air bag expansion, flame quenching by the flame arrester, and the slow burning of the gas mixture sucked from the air bag back into the vessel due to the negative pressure caused by the rapid condensation of water vapor inside the vessel. Necessary conditions for the successful mitigation system are discussed, and the practical unit size of flame arrester sheet is recommended.
机译:提出了一种小型缓解系统,用于核电站建筑物中的氢气脱气镶嵌,并通过使用不同体积尺寸的爆炸血管的一系列现场实验开发。 缓解系统安装在容器的外表面上,它包括火焰避雷器和爆炸气囊。 火焰避雷器是通过堆叠10-20张细网的线屏来制造的,并且气囊连接用于保持爆炸气体。 成功的缓解机制是通过气囊膨胀的压力降低的序列,火焰避雷器的火焰淬火,并且由于由由此引起的负压而从气囊吸入的气体混合物的缓慢燃烧 血管内部水蒸气的快速凝结。 讨论了成功缓解系统的必要条件,建议使用实用单位尺寸的火焰避雷器。

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