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Pressure peaking phenomena: Unignited hydrogen releases in confined spaces - Large-scale experiments

机译:压力峰值现象:限制空间的非征兵氢释放 - 大型实验

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The aim of this study was to validate a model for predicting overpressure arising from accidental hydrogen releases in areas with limited ventilation. Experiments were per- formed in a large-scale setup that included a steel-reinforced container of volume 14.9 m(3) and variable ventilation areas and mass flow rates. The pressure peaking phenomenon, characterized as transient overpressure with a characteristic peak in a vented enclosure, was observed during all the experiments. The model description presented the relationship between the ventilation area, mass flow rate, enclosure volume, and discharge coefficient. The experimental results were compared with two prediction models representing a perfect mix and the real mix. The perfect mix assumed that all the released hydrogen was well stirred inside the enclosure during the releases. The real mix prediction s used the hydrogen concentration and temperature data measured during experiments. The prediction results with both perfect mix and real mix showed possible hazards during unignited hydrogen releases. (C) 2020 The Authors. Published by Elsevier Ltd on behalf of Hydrogen Energy Publications LLC.
机译:本研究的目的是验证用于预测通风有限的区域意外氢释放的过压模型。实验在大规模设置中形成,其中包含14.9米(3)和可变通风区域和质量流量的钢筋增强容器。在所有实验期间观察到具有在通风外壳中具有特征峰的瞬态过度压抑的压力峰值现象。模型描述介绍了通风区,质量流量,外壳体积和放电系数之间的关系。将实验结果与代表完美混合和真实混合的两种预测模型进行了比较。完美的混合物假设在释放期间,所有释放的氢气在外壳内搅拌很好。真实混合预测S使用在实验期间测量的氢浓度和温度数据。具有完美混合和真实混合的预测结果显示出在非征收氢释放期间可能的危险。 (c)2020作者。由elsevier有限公司发布代表氢能出版物LLC。

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