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基于多因素的城市燃气管道泄漏警戒区域模拟研究
引用本文:丁谢镔. 基于多因素的城市燃气管道泄漏警戒区域模拟研究[J]. 消防科学与技术, 2022, 41(1): 76-81
作者姓名:丁谢镔
作者单位:(福建省消防救援总队,福建 福州 350003)
摘    要:以城市燃气管道泄漏应急救援警戒范围为研究对象,建立区域典型场景,设置管道压强、泄漏时长、风速、气温、日照辐射强度等5组单变量场景组合,模拟管道破损、可燃气体泄漏扩散行为.提出将影响范围"稳态到达时间"与影响范围大小一并作为特征指标,分析不同变量对特征指标的影响.结果表明,在各单变量场景组内,吸入毒性范围值最小;易燃范围...

关 键 词:消防  城市燃气管道  泄漏扩散  应急救援  警戒区域

Simulation research on alert zones of city gas pipeline leakage based on multi-factor
DING Xie-bin. Simulation research on alert zones of city gas pipeline leakage based on multi-factor[J]. Fire Science and Technology, 2022, 41(1): 76-81
Authors:DING Xie-bin
Affiliation:(Fujian Fire and Rescue Brigade, Fujian Fuzhou 350003, China)
Abstract:The paper takes the city gas pipeline leakage alert zones as the research object. By establishing regional typical scenes, a series of different univariate comparison scene combinations, including pipeline pressure, leakage duration, wind speed, temperature, and solar radiation intensity, are set to simulate pipeline damage and combustible gas leakage and diffusion behavior. It is proposed that the steady-state arrival time and the size of the influence range are used as characteristic indicators to compare and analyze the influence of different condition variables. The results show that, within each univariate scenario group, the inhalation toxicity range is the smallest; the flammable range is the largest, and the ranges at all levels are slightly larger than the explosion damage range. comparing each univariate scene group horizontally, in the case of continuous leakage, the leakage duration does not affect the sizes of the three danger zones of inhalation toxicity, flammability, explosion damage and steady-state arrival times, but only affects the maintenance time of the impact range. the other four parameters affect the sizes of the danger zone and steady-state arrival times to varying degrees; the degree of influence is: pipeline pressure> wind speed> solar radiation> ambient temperature. Under univariate comparison conditions, the values of the three hazard ranges and steady-state arrival times increase with the increase of pipeline pressure or ambient temperature, and decrease with the increase of wind speed or solar radiation intensity. Obtain the quantitative influence and change trend of the two characteristic indicators with different values of each variable. Comparing the two types of gas leakage accident scenarios, continuous leakage and instantaneous leakage, the different rules are obtained. And a targeted analysis puts forward the key points that the fire rescue team should pay attention to when dealing with urban gas pipeline leakage accidents.
Keywords:fire fighting  city gas lines  leakage diffusion  emergency rescue  alert zones
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