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Investigation of the Allowable Flow Rate of Hydrogen Leakage on Receptacle

机译:调查容器漏液泄漏的允许流速

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In this study, hydrogen was leaked using a nozzle that simulated an actual leak port (with varied materials and diameters), and the possibility of ignition was verified to collect data useful for establishing standards for the allowable flow rate of hydrogen leakage on receptacle. With the flow rate of a hydrogen leak set at 250 mL/h(NTP) (hereinafter mL/h is NTP condition) or less, ignition of leaked hydrogen with an electric spark and a small methane-fueled flame was attempted. The results confirmed that ignition of 200 mL/h of hydrogen was not achieved under tested conditions. In some cases, hydrogen at a flow rate of 250 mL/h was ignited. Tissue paper placed in contact with the flame at a flow rate of 250 mL/h combusted, resulting the flame went out almost immediately. Therefore, it was determined that a hydrogen leak at approximately 200 mL/h that occurred in this test is a very low possibility of ignition or spreading.
机译:在这项研究中,使用喷嘴泄漏氢气,该喷嘴模拟实际泄漏端口(具有变化的材料和直径),并且验证了点火的可能性,以收集用于建立用于在容器上漏气泄漏漏率的标准的数据。随着氢气泄漏的流速设定为250ml / h(下文称为ML / H是NTP条件)或更小,试图用电火花和小甲烷燃料火焰的泄漏氢的点火。结果证实,在测试条件下未实现200ml / h的点火。在一些情况下,点燃流速为250ml / h的氢。纸巾以250ml / h燃烧的流速与火焰接触,使火焰几乎立即出现。因此,确定该试验中发生约200ml / h的氢气泄漏是点火或展开的非常低的可能性。

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