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Ignition of flammable hydrogen/air mixtures by high mass mechanical impact of Magnox contaminated surfaces

机译:受到Magnox污染的表面的高质量机械冲击会点燃可燃的氢气/空气混合物

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摘要

Magnox and its corrosion products are a major constituent of some legacy nuclear waste storage silos which generate hydrogen. An experimental study investigates the likelihood of ignition of hydrogen/air when large mass projectiles impact rusty surfaces with Magnox contamination. Ignition is observed with 50 kg projectiles impacting a 45 degrees Magnox-smeared rusty anvil plate with KE as low as 40 J. Theoretical calculations relating to the angled impacts reveal that they involve substantial tangential energy losses associated with frictional heating of the impact surfaces. It is shown that these energy losses are particularly dependent on the shape of the projectile since projectile geometry determines the radius of gyration and the relationship of centre of gravity to the impact point. In conclusion, the projectile shape is likely to be of greater importance than the mass (i.e. for a given impact energy) because of its direct bearing on the magnitude of the tangential energy loss. (C) 2019 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:Magnox及其腐蚀产物是一些旧有的产生氢的核废料储存仓的主要组成部分。一项实验研究调查了大质量弹丸撞击Magnox污染的生锈表面时氢气/空气着火的可能性。在50千克射弹撞击KE值低至40 J的45度Magnox涂片的生锈砧板上时,会发生着火。与倾斜冲击有关的理论计算表明,它们涉及与冲击表面摩擦加热相关的大量切向能量损失。结果表明,这些能量损失尤其取决于弹丸的形状,因为弹丸的几何形状决定了回转半径以及重心与冲击点的关系。总之,由于抛射形状直接影响切向能量损失的大小,因此抛射形状比质量更重要(即对于给定的冲击能量)。 (C)2019氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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