首页> 外文期刊>Journal of loss prevention in the process industries >Long-term consequence and vulnerability assessment of thermal radiation hazard from LNG explosive fireball in open space based on full-scale experiment and PHAST
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Long-term consequence and vulnerability assessment of thermal radiation hazard from LNG explosive fireball in open space based on full-scale experiment and PHAST

机译:基于全规模实验和Phast的开放空间液化天然气爆炸火球的热辐射危害的长期后果和脆弱性评估

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This study is related to consequence analyses of accidental LNG explosions are often carried out to assess the long-term consequence and vulnerability of the gas transportation pipeline system. In these consequence analyses, it's indispensable to adequately predict the thermal radiation intensity of LNG explosive fireball process in open space. In this study, a new empirical theoretical method for explosive fireball in open space was developed and a full-scale experiment involving LNG explosion in transmission pipeline was carried out. Significant theoretical prediction, experimental testing and quantitative analysis with numerical simulation commenced leading to a better understanding of the thermal radiation hazard from LNG explosive fireball. The parameters of LNG explosive fireball were compared and verified with the full-scale experimental data, and it found that the theoretical predictions agreed well with experimental data. To demonstrate and verify the probability and potential hazard range to humans and surroundings, hazard analysis of this case was performed on the PHAST simulator. Based on the corresponding thermal radiation harm criterion, it is concluded that a near 100% fatality is expected in the range of within 190 m and there is no any harm when people stay beyond the scope with the ellipse diameter of 720 m. (C)2017 Elsevier Ltd. All rights reserved.
机译:本研究与意外LNG爆炸的后果分析往往进行,以评估煤气运输管道系统的长期后果和脆弱性。在这些后果分析中,可以充分预测开放空间中LNG爆炸火球过程的热辐射强度是必不可少的。在这项研究中,开发了一种新的爆炸火球的经验理论方法,开发了一种涉及传输管道液化天然气爆炸的全规模实验。具有数值模拟的显着的理论预测,实验测试和定量分析开始,从而更好地了解LNG爆炸火球的热辐射危害。将LNG爆炸火球的参数进行比较和验证全规模的实验数据,发现理论预测与实验数据很好。为了证明和验证对人类和周边环境的概率和潜在的危险范围,对Phast模拟器进行了这种情况的危害分析。基于相应的热辐射损害标准,得出结论是,预期接近100%的致命程度在190米内的范围内,当人们保持超出椭圆直径为720米的范围时,毫无危害。 (c)2017 Elsevier Ltd.保留所有权利。

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