CFD simulation of spontaneous coal combustion in irregular patterns of goaf with multiple points of leaking air

Zong-xiang LI
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引用次数: 23

Abstract

Based on the non-linear air leakage seepage equation for an anisotropic porous medium, on the seepage diffusion equation of multicomponent gas and on the seepage synthetic heat transfer equation of a porous medium, the numerical model for field flow problems of irregular patterns of a goaf with multiple points of leaking air is established and simultaneously solved by the upwind mode finite element method (G3 computer program). According to the complexity of irregular patterns of a goaf with multiple points of leaking air, the flow pattern in a large area of such a goaf and the variation in gases of methane, oxygen and CO and in temperature are theoretically described. In the calculation, the goaf is regarded as a caving anisotropic medium and the coupling effect of methane effusion on spontaneous combustion is considered. The simulation results agree well with practical experience. In addition, the spontaneous combustion process is also simulated, indicating that 1) the spontaneous combustion often takes place near the area where fresh air leaks in and 2) the fire sources can be classified into static and dynamic zones. Therefore, in practical fire preventing and extinguishing, we should clearly distinguish the upstream air leaking points from the downstream ones in order to take proper measures for leakage stopping.

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多漏风点采空区不规则形态煤自燃CFD模拟
基于各向异性多孔介质的非线性漏风渗流方程、多组分气体的渗流扩散方程和多孔介质的渗流综合传热方程,建立了具有多点漏风的采空区不规则形态场流问题的数值模型,并采用迎风模态有限元法(G3计算机程序)进行了同步求解。根据多点漏风采空区不规则形态的复杂性,从理论上描述了该采空区大面积内的流动形态以及甲烷、氧气、CO气体和温度的变化。在计算中,将采空区视为崩落各向异性介质,并考虑了甲烷射流对自燃的耦合效应。仿真结果与实际经验吻合较好。此外,对自燃过程也进行了模拟,结果表明:1)自燃常发生在新风泄漏区域附近;2)火源可分为静态区和动态区。因此,在实际防火灭火中,应明确区分上游漏气点和下游漏气点,以便采取适当的堵漏措施。
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