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基于元胞自動機的井巷火災仿真

Cellular automata-based tunnel fire simulation

  • 摘要: 提出了一種基于元胞自動機的井巷火災可視化仿真方法.在礦井巷道可視化的基礎上,通過對火災元胞進行表征,綜合考慮可燃物類型與投放密度、井巷通風、井巷坡度等因素對井巷火源引燃效果的影響及雙擴散作用、井巷通風、浮力作用和節流作用等因素對火災煙氣蔓延效果的影響,采用概率函數進行元胞自動機建模,構建了表達元胞溫度的井巷火源燃燒模型和表達元胞濃度的井巷火災煙氣蔓延模型.基于火源元胞燃燒演化規則和煙氣元胞蔓延演化規則,通過可視化手段展示了井巷火災火源燃燒和有害氣體濃度的時空發展變化.同時以礦山實際數據進行檢驗,說明了基于元胞自動機的井巷火災仿真的可行性與有效性.

     

    Abstract: This article introduces a mine fire visualization simulation method based on cellular automata. On the basis of mine tunnel visualization, a tunnel fire combustion model for expressing cellular temperature and a tunnel fire smoke spread model for expressing cellular concentration were built by fire cell characterization. In these models the influence of fuel type and input density, ventilation and roadway slope on mine fire ignition and the effect of double diffusion, ventilation, buoyancy and throttling on fire smoke spread were taken into account, and a probability function was used for cellular automata modelling. Then according to the fire cellular combustion evolution rules and smoke cellular spreading evolution rules, the spatial changes of tunnel fire burning and harmful gas concentration were demonstrated through visualization means. Actual data from a mine proves the feasibility and effectiveness of tunnel fire simulation based on cellular automata.

     

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