电器与能效管理技术 ›› 2025, Vol. 0 ›› Issue (12): 67-75.doi: 10.16628/j.cnki.2095-8188.2025.12.009

• 储能技术 • 上一篇    下一篇

加氢站液氢泄漏扩散仿真研究

马文金, 曾其权, 廖火生, 刘世学, 张淑兴   

  1. 中广核研究院有限公司 氢能产业技术创新中心, 广东 深圳 518000
  • 收稿日期:2025-10-05 出版日期:2025-12-30 发布日期:2025-12-31
  • 作者简介:马文金(1995—),男,工程师,主要从事能量管理系统开发与氢安全研究。|曾其权(1982—),男,正高级工程师,主要从事新能源技术研究。|廖火生(1987—),男,高级工程师,主要从事固体氧化物燃料电池系统开发及氢安全研究。
  • 基金资助:
    国家自然科学基金项目(52277080)

Research on Simulation of Liquid Hydrogen Leakage and Diffusion in Hydrogen Refueling Stations

MA Wenjin, ZENG Qiquan, LIAO Huosheng, LIU Shixue, ZHANG Shuxing   

  1. Hydrogen Energy Industry Technology Innovation Center, China Nuclear Power Technology Research Institute Co., Ltd., Shenzhen 518000, China
  • Received:2025-10-05 Online:2025-12-30 Published:2025-12-31

摘要: 研究加氢站发生持续液氢泄漏后的危险氢气扩散行为,为安全防护设计提供理论依据。假设某液氢储罐在10 m/s西风条件下发生了中孔径泄漏,并且液氢泄漏方向与风向相同,基于Fluent软件建立下风向长度220 m的计算域和加氢站模型,完成100 s的液氢泄漏相变与扩散瞬态数值模拟。结果表明,易燃氢气云团第54 s达到最大扩散距离83.77 m,随后趋于稳定;危险氢气云团竖直方向扩散高度不超过10 m,爆炸和低温氢气云团被约束在U型墙内。因此,未来液氢加氢站易燃气体安全防护半径不应小于83.77 m,应严格减少液氢储罐周围装备布置,并重点布防加氢站内10 m以下空间。

关键词: 氢, 泄漏, 扩散, 数值模拟, 安全防护

Abstract:

The diffusion behavior of dangerous hydrogen gas after a continuous liquid hydrogen leakage in a hydrogen refueling station is researched, which can provide the thearetical basis for safety protection design. It is assumed that a medium aperture leak occurred in a liquid hydrogen storage tank under 10 m/s westerly wind conditions, and the direction of the leak is the same as the wind direction. A 220 m length calculation domain and a hydrogen refueling station model in the downwind direction based on Fluent soft are established. A 100 s transient numerical simulation of liquid hydrogen leakage phase transition and diffusion is completed. The results indicated that the flammable hydrogen cloud reached its maximum diffusion distance of 83.77 m at 54 s and then stabilized, the vertical diffusion height of the hazardous hydrogen cloud does not exceed 10 m, and the explosive and low-temperature hydrogen clouds are confined within the U-shaped wall. Therefore, in the future the safety protection radius for flammable gases at liquid hydrogen refueling stations should not be less than 83.77 m. It is necessary to strictly reduce the layout of equipment around liquid hydrogen storage tanks and focus on the protection of the space below 10 m of the refueling station.

Key words: hydrogen, leakage, diffusion, numerical simulation, safety protection

中图分类号: