石油化工安全环保技术 ›› 2025, Vol. 41 ›› Issue (6): 40-43.

• 安全与环保管理 • 上一篇    

基于 ALOHA 软件的输气站场泄漏扩散后果模拟分析

额冬梅   

  1. 北京慧智安顺注册安全工程师事务所有限公司,北京 101300
  • 收稿日期:2024-01-07 接受日期:2025-11-15 出版日期:2025-12-20 发布日期:2026-01-05
  • 作者简介:额冬梅,女,2008 年毕业于四川农业大学水土保持与荒漠化防治专业,硕士,现从事危险化学品安全管理工作,注册安全工程师。E-mail: cnpc_lizx@163.com

Simulation Analysis of Leakage Diffusion Consequences at Gas Transmission Stations Based on ALOHA Software

E Dongmei   

  1. Beijing Huizhi Anshun Certified Safety Engineer Co., Ltd., Beijing, 101300
  • Received:2024-01-07 Accepted:2025-11-15 Online:2025-12-20 Published:2026-01-05

摘要: 基于 ALOHA 软件和高斯烟羽模型,通过输气站场泄漏事故场景设置,分析不同因素对伤害区域扩散距离的影响,及最不利条件下的扩散影响。结果表明,泄漏孔径越大、大气稳定度越高,不同伤害区域的扩散距离越远;泄漏点高度越高、风速越大、地面粗糙度越大,不同伤害区域的扩散距离越近;风速和大气稳定度对扩散距离的敏感性较强;最不利条件下站场下风向 150m 处的民房存在安全距离不足的问题,在这附近的室外人员存在一定的损伤风险。研究结果可为快速合理的划分警戒区域提供理论依据,保证输气站场的安全平稳运行。

关键词: ALOHA, 输气站场, 泄漏扩散, 高斯烟羽, 天然气

Abstract: ALOHA software and the Gaussian Plume Model were utilized as the basis to analyze the impact of various factors on the spread distance of hazard zones through the setting of leakage accident scenarios. And the diffusion influence under worst-case conditions was analyzed. The results show that larger leakage apertures and higher atmospheric stability levels result in farther diffusion distance of different hazard zones; and higher height of leakage point, greater wind speeds and greater surface roughness reduce the spread distances of these zones; wind speed and atmospheric stability demonstrate stronger sensitivity in influencing diffusion distances; under worst-case conditions, residential buildings 150m downwind of the station fail to meet minimum safety distances, exposing outdoor personnel in this vicinity to a certain injury risk. The research results can provide a theoretical basis for the rapid and reasonable division of the alert areas,to ensure the safe and stable operation of gas transmission stations.

Key words: ALOHA, gas transmission station, leakage diffusion, Gaussian plume, natural gas