纯氢或氢与天然气混合管道全规模喷射火灾的数值模拟和后果分析

Fire Pub Date : 2024-05-24 DOI:10.3390/fire7060180
Meng Li, Zhenhua Wang, Juncheng Jiang, Wanbing Lin, Lei Ni, Yong Pan, Guanghu Wang
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摘要

利用现有的天然气管道运输氢气/天然气混合物可以实现大规模、长距离和低成本的氢气运输。高压纯氢和氢混合物天然气管道泄漏引发的喷射火可能会对生命和财产造成严重威胁。基于阿贝尔-诺贝尔状态方程和名义喷嘴模型,建立了等效管道泄漏模型,用于模拟高压管道气体泄漏喷射起火事故。模拟了大规模高压氢气和天然气/氢气混合物射流火灾,展示了射流撞击过程,并获得了准确有效的模拟框架。通过比较火焰高度、火焰外观和热辐射的模拟结果和实验测量结果,验证了这一框架。比较了几种燃烧模型,模拟数据显示非预混合化学平衡燃烧模型优于其他燃烧模型。探讨了管道压力和氢气混合比对天然气/氢气混合物管道泄漏喷射起火事故后果的影响。研究发现,当氢气混合比低于 22% 时,氢气混合比的增加对热辐射危害距离的减小影响不大。
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Numerical Simulation and Consequence Analysis of Full-Scale Jet Fires for Pipelines Transporting Pure Hydrogen or Hydrogen Blended with Natural Gas
The use of existing natural gas pipelines for the transport of hydrogen/natural gas mixtures can achieve large-scale, long-distance and low-cost hydrogen transportation. A jet fire induced by the leakage of high-pressure pure hydrogen and hydrogen-blended natural gas pipelines may pose a severe threat to life and property. Based on the Abel–Nobel equation of state and a notional nozzle model, an equivalent pipe leakage model is established to simulate high-pressure pipeline gas leakage jet fire accidents. Large-scale high-pressure hydrogen and natural gas/hydrogen mixture jet fires are simulated, showing the jet impingement process and obtaining an accurate and effective simulation framework. This framework is validated by comparing the simulated and experimental measured results of flame height, flame appearance and thermal radiation. Several combustion models are compared, and the simulated data show that the non-premixed chemical equilibrium combustion model is superior to other combustion models. The influence of the pipe pressure and the hydrogen blending ratio on the consequences of natural gas/hydrogen mixture pipeline leakage jet fire accidents is explored. It is found that when the hydrogen blending ratio is lower than 22%, the increase in the hydrogen blending ratio has little effect on the decrease in the thermal radiation hazard distance.
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