赵文彬, 赵超, 李福存, 刘晴, 蔡海伦, 宋蕾. 不同外部条件下自然堆积煤堆漏风规律实验研究[J]. 煤矿安全, 2018, 49(11): 44-48.
    引用本文: 赵文彬, 赵超, 李福存, 刘晴, 蔡海伦, 宋蕾. 不同外部条件下自然堆积煤堆漏风规律实验研究[J]. 煤矿安全, 2018, 49(11): 44-48.
    ZHAO Wenbin, ZHAO Chao, LI Fucun, LIU Qing, CAI Hailun, SONG Lei. Experimental Study on Air Leakage Laws of Natural Stacked Coal Pile Under Different External Conditions[J]. Safety in Coal Mines, 2018, 49(11): 44-48.
    Citation: ZHAO Wenbin, ZHAO Chao, LI Fucun, LIU Qing, CAI Hailun, SONG Lei. Experimental Study on Air Leakage Laws of Natural Stacked Coal Pile Under Different External Conditions[J]. Safety in Coal Mines, 2018, 49(11): 44-48.

    不同外部条件下自然堆积煤堆漏风规律实验研究

    Experimental Study on Air Leakage Laws of Natural Stacked Coal Pile Under Different External Conditions

    • 摘要: 为了探求外部条件对煤堆漏风规律的影响,利用自燃“三带”理论对煤堆漏风规律进行了分析并推导了煤堆漏风方程,公式表明惯性力作用项中粒径与漏风风速成正比;黏性力作用项中漏风风速与粒径成正比,压力梯度与漏风风速为二次方程的关系;考虑粒径、管径、煤种以及堆积高度等因素对煤堆的漏风规律进行实验测试,得出结论:粒径对煤堆漏风影响显著,随粒径减小,漏风风速呈下降趋势且下降幅度由大到小变化;随管径的增大,漏风风速增加,管径越大,压降明显;随煤柱高度的增加,漏风风速呈指数下降。

       

      Abstract: In order to find out the influence of external conditions on the air leakage laws of the coal pile, in this paper, the theory of “three zones” of spontaneous combustion is used to analyze the air leakage laws of the coal pile and to deduce the air leakage equation of the coal pile. The formula shows that the particle size in the action term of the inertial force is proportional to the wind velocity of the air leakage. The wind velocity in the viscous force is proportional to the particle size, the relationship between the pressure gradient and the wind velocity is a quadratic equation. The air leakage law of coal pile was tested by taking into account such factors as particle size, pipe diameter, coal type and pile height. It is concluded that the particle size has a significant influence on the air leakage of coal pile; as the particle size decreases, the wind velocity of air leakage shows a downward trend and the decrease range varies from large to small; as the pipe diameter increases, the air leakage velocity increases, and the pipe diameter increases, the pressure drop is obvious; the wind velocity decreases exponentially with the increase of coal column height.

       

    /

    返回文章
    返回