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Experimental Evaluation Of Barrier Walls For Risk Reduction Of Unintended Hydrogen Releases

机译:降低意外氢气释放风险的隔离墙的实验评估

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Hydrogen-jet flames resulting from ignition of unintended releases can be extensive in length and pose hazards associated with radiation and impingement onto objects, combustible materials and people. Depending on the leak diameter and source pressure, the resulting consequence distances can be unacceptably large. One possible mitigation strategy to reduce exposure to jet flames is to incorporate barriers around hydrogen storage and delivery equipment. While reducing the extent of unacceptable consequences, the walls may introduce other hazards if not properly configured. An experimental program has been implemented to better characterize the effectiveness of barrier walls at risk mitigation. This paper describes the experiments and presents results obtained for various barrier configurations. The measurements include flame deflection using standard and infrared video, high-speed movies (500 fps) to study initial flame propagation from the ignition source, overpressure levels due to ignition, wall deflection, radiative heat flux, and gas and wall temperatures. The various barrier designs are evaluated in terms of their mitigation effectiveness for the associated hazards present. The results show that barrier walls are effective at deflecting flames in a desired direction. While barrier walls can result in increased overpressures and radiative heat flux in the vicinity of the wall, they can also attenuate the effects of these hazards in surrounding areas if properly implemented.
机译:点燃意外释放所引起的氢射流火焰的长度可能很长,并具有与辐射和撞击物体,可燃材料和人员相关的危害。取决于泄漏直径和源压力,所导致的结果距离可能会过大。减少暴露在喷射火焰中的一种可能的缓解策略是在氢气存储和输送设备周围引入屏障。在减少不可接受后果的程度的同时,如果配置不当,墙壁可能会带来其他危险。已经实施了一项实验计划,以更好地表征降低风险时的隔离墙的有效性。本文介绍了实验,并介绍了各种屏障配置获得的结果。这些测量包括使用标准和红外视频的火焰偏转,高速电影(500 fps)以研究火焰从点火源的初始传播,点火引起的超压水平,壁偏转,辐射热通量以及气体和壁温。根据各种屏障设计的缓解效果评估存在的相关危险。结果表明,阻隔壁可有效地使火焰向所需方向偏转。尽管隔离墙会导致隔离墙附近的超压和辐射热通量增加,但如果正确实施,隔离墙也可以减轻周围区域这些危害的影响。

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