王文才, 张培, 崔宏磊. 煤田露头火区风流运动规律研究[J]. 煤矿安全, 2016, 47(6): 36-40.
    引用本文: 王文才, 张培, 崔宏磊. 煤田露头火区风流运动规律研究[J]. 煤矿安全, 2016, 47(6): 36-40.
    WANG Wencai, ZHANG Pei, CUI Honglei. Research on Air-flow Movement Law in Coalfield Outcrop Fire Area[J]. Safety in Coal Mines, 2016, 47(6): 36-40.
    Citation: WANG Wencai, ZHANG Pei, CUI Honglei. Research on Air-flow Movement Law in Coalfield Outcrop Fire Area[J]. Safety in Coal Mines, 2016, 47(6): 36-40.

    煤田露头火区风流运动规律研究

    Research on Air-flow Movement Law in Coalfield Outcrop Fire Area

    • 摘要: 通过对煤田露头火区自然通风系统特征以及风流运动规律的分析,得出煤田露头火区风流运动的基本方程。借助于Fluent软件,对不同参数条件下的煤田露头火区进行了数值模拟。结果表明,火区气体在进风渗流运动过程中温度与外界环境基本一致;经过火区后温度急剧上升并达到峰值,同时产生较大火风压,火风压与自然风压共同作用为火区提供通风动力;在通过火区的通风路线上,气体的运动符合能量守恒定律、达西定律(进风线路)和布西涅斯基窄缝流体运动规律(回风线路);在不通过火区的漏风路线上,气体的运动符合能量守恒定律和达西定律。

       

      Abstract: Through the analysis about nature ventilation system characters and the air-flow movement laws in coalfield outcrop fire area, the basic equations of coalfield outcrop fire area are obtained. The coalfield outcrop fire areas in the case of different parameters are simulated by Fluent software. The results show that the temperature of the burning gas in the process of seepage flow is basically identical with the temperature of the environment; the gas temperature rapidly rises and reaches a peak after going through the burning area, and it produces larger fire pressure. The combined action from fire pressure and nature pressure provides fire ventilation. On the route of getting across the burning area, the movement of the gas conforms to the law of conservation of energy, Darcy's law (inlet air lines) and narrow gap fluid motion law of Boussines. On the route of air leakage, the gas moves according to the Laws of conservation of energy and Darcy's law.

       

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