化工园区火灾状态智能演化仿真研究
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Intelligent Evolutionary Simulation Study of Fire Spread in Chemical Industrial Parks
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    摘要:

    目的 为了研究化工园区火灾蔓延情况,建立一个可靠的仿真系统,模拟火势的扩散过程。 利用系统可以对 不同条件下的火灾蔓延进行模拟和预测,为化工园区火灾的防控提供科学依据和有效手段,同时,该系统也可以用 于火灾事故的应急响应和演练,提高应对火灾事故的能力和水平。 方法 利用元胞自动机、经验蔓延概率以及组合 模型进行火势蔓延仿真。 运用火势蔓延模型结合元胞自动机理论,基于实际火灾蔓延过程中的经验和数据制定状 态转移规则,综合考虑地形、风速、坡度、湿度等多种因素对火蔓延的影响。 结果 可以模拟不同条件下火势蔓延情 况,如火源位置、风向、风速、温度等因素的影响;经过多次实验得到火灾重要数据—平均燃烧速率,与实际火灾的 燃烧速率进行范围对比,具有 93%的准确性。 结论 仿真系统将模拟结果以三维的形式呈现出来,更直接清楚;实 验数据准确度高,可以更好地评估火灾事故的危害和预测火势发展趋势;可以对不同条件下的火灾蔓延进行分析, 为研究火势蔓延机理和制定火灾防控措施提供理论依据和技术支持。

    Abstract:

    Objective To study the spread of fire in chemical industry parks a reliable simulation system is established to simulate the process of fire spread. The system can simulate and predict fire spread under different conditions and provide a scientific basis and effective means for fire prevention and control in chemical industry parks. At the same time the system can also be used for emergency response and drills of fire accidents to improve the ability and level of responding to fire accidents. Methods Fire spread simulation is conducted using cellular automata empirical spread probabilities and a combined model. Using the fire spread model combined with the theory of cellular automata the state transition rules are formulated based on the experience and data in the actual fire spreading process and the effects of various factors such as terrain wind speed slope and humidity on fire spreading are considered comprehensively. Results The system can simulate fire spread under different conditions including the influence of factors like the fire source location wind direction wind speed and temperature. Through multiple experiments crucial fire data the average burning rate has been obtained which has been compared with the burning rates observed in actual fires achieving an accuracy of 93%. Conclusion The simulation system presents the simulation results in three-dimensional form which is more direct and clear. The high accuracy of the experimental data can better assess the hazard of the fire accident and predict the fire development trend. The analysis of fire spread under different conditions can provide a theoretical basis and technical support for studying fire spread mechanisms and formulating fire prevention and control measures.

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汤亚玲 , 钟春燕 , 张学锋 ,杨武洲 ,江 军.化工园区火灾状态智能演化仿真研究[J].重庆工商大学学报(自然科学版),2025,42(5):72-77
TANG Yaling ZONG Chunyan ZHANG Xuefeng YANG Wuzhou JIANG Jun . Intelligent Evolutionary Simulation Study of Fire Spread in Chemical Industrial Parks[J]. Journal of Chongqing Technology and Business University(Natural Science Edition),2025,42(5):72-77

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  • 在线发布日期: 2025-09-24
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