Application of Theoretical Framework into the Jet Fire Consequence of Nature Gas Transmission Pipeline

Author:

Zhou Kuibin

Publisher

Springer Nature Singapore

Reference14 articles.

1. Acton MR, Baldwin PJ (2008) Ignition probability for high pressure gas transmission pipelines. In: Proceedings of the 7th international pipeline conference

2. ARIA. Rupture and ignition of a gas pipeline, July 30, 2004, Ghislenghien, Belgium: French Ministry of Sustainable Development - DGPR / SRT / BARPI No, 2009

3. Cleaver RP, Halford AR (2015) A model for the initial stages following the rupture of a natural gas transmission pipeline. Process Safety Environ Protect 2015: 202–214

4. Wang K, Liu Z, Qian X et al (2017) Long-term consequence and vulnerability assessment of thermal radiation hazard from LNG explosive fireball in open space based on full-scale experiment and PHAST. J Loss Prev Process Ind 46:13–22

5. Cowling N, Phylaktou H, Allason D et al (2019) Thermal radiation hazards from gas pipeline rupture fireballs. Proceedings of the proceedings of the ninth international seminar on fire and explosion hazards (ISFEH9), Saint-Petersburg, Russia, F, 2019. Saint-Petersburg Polytechnic University Press

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