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A study of barrier walls for mitigation of unintended releases of hydrogen

机译:旨在减少氢气意外释放的隔离墙的研究

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Hydrogen jet flames resulting from ignition of unintended releases can be extensive in length and pose significant radiation and impingement hazards. 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. An experimental and modeling program has been performed at Sandia National Laboratories to better characterize the effectiveness of barrier walls to reduce hazards. This paper describes the experimental and modeling program and presents results obtained for various barrier configurations. The experimental measurements include flame deflection using standard and infrared video and high-speed movies (500 fps) to study initial flame propagation from the ignition source. Measurements of the ignition overpressure, wall deflection, radiative heat flux, and wall and gas temperature were also made at strategic locations. The modeling effort includes three-dimensional calculations of jet flame deflection by the barriers, computations of the thermal radiation field around barriers, predicted overpressure from ignition, and the computation of the concentration field from deflected unignited hydrogen releases. 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 jet flames in a desired direction and can help attenuate the effects of ignition overpressure and flame radiative heat flux.
机译:点燃意外释放引起的氢射流火焰的长度可能很长,并且会产生严重的辐射和撞击危险。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。桑迪亚国家实验室(Sandia National Laboratories)已执行了一项实验和建模程序,以更好地表征隔离墙减少危险的有效性。本文介绍了实验和建模程序,并介绍了各种屏障配置所获得的结果。实验测量包括使用标准和红外视频以及高速电影(500 fps)的火焰偏转,以研究来自点火源的初始火焰传播。还对关键位置进行了点火超压,壁偏转,辐射热通量以及壁和气体温度的测量。该建模工作包括三维计算的由障碍物引起的射流火焰偏转,对障碍物周围的热辐射场的计算,预测的着火过压以及偏转的未点燃氢释放物的浓度场的计算。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,阻隔壁可有效地使喷射火焰沿所需方向偏转,并有助于减弱点火超压和火焰辐射热通量的影响。

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