董军, 于贵生, 王金宝. 综放工作面采空区连续注氮防灭火工艺参数仿真优化[J]. 煤矿安全, 2016, 47(7): 186-189.
    引用本文: 董军, 于贵生, 王金宝. 综放工作面采空区连续注氮防灭火工艺参数仿真优化[J]. 煤矿安全, 2016, 47(7): 186-189.
    DONG Jun, YU Guisheng, WANG Jinbao. Simulating Optimization of Process Parameters for Fire Prevention by Continuous Nitrogen Injection in Goaf of Fully Mechanized Caving Face[J]. Safety in Coal Mines, 2016, 47(7): 186-189.
    Citation: DONG Jun, YU Guisheng, WANG Jinbao. Simulating Optimization of Process Parameters for Fire Prevention by Continuous Nitrogen Injection in Goaf of Fully Mechanized Caving Face[J]. Safety in Coal Mines, 2016, 47(7): 186-189.

    综放工作面采空区连续注氮防灭火工艺参数仿真优化

    Simulating Optimization of Process Parameters for Fire Prevention by Continuous Nitrogen Injection in Goaf of Fully Mechanized Caving Face

    • 摘要: 为确定5-2S-2综放工作面采空区连续注氮防灭火最佳工艺参数,依据计算流体力学基本理论,构建采空区渗流场物理数学模型,借助于Comsol模拟软件,对不同注氮条件下的采空区氧浓度分布及“三带”划分进行数值模拟研究,得到最佳注氮参数为:注氮量400 m3/h,注氮口位置距工作面30 m,注氮时间15 h/d。

       

      Abstract: In order to determine the optimal process parameters for fire prevention with continuous nitrogen injection at 5-2S-2 fully mechanized caving goaf. The physical-mathematical model of goaf flow field was established on the basis of the basic theory of computational fluid mechanics. Numerical simulation of goaf oxygen concentration distribution and "three zone" division under different nitrogen injection condition was conducted by using COMSOL software. The optimal parameters of nitrogen injection are as follow: 400 m3/h injection capacity of nitrogen, nitrogen injection port position away from the face of 30 m, the nitrogen injection time of 15 h/d.

       

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