闫晶晶, 王 飞, 李雨成, 刘红威, 高亚斌, 李子文. 掘进工作面喷雾水幕蒸发增湿特性研究[J]. 煤矿安全, 2023, 54(3): 85-92.
    引用本文: 闫晶晶, 王 飞, 李雨成, 刘红威, 高亚斌, 李子文. 掘进工作面喷雾水幕蒸发增湿特性研究[J]. 煤矿安全, 2023, 54(3): 85-92.
    YAN Jingjing, WANG Fei, LI Yucheng, LIU Hongwei, GAO Yabin, LI Ziwen. Research on evaporation and humidification characteristics of spray water curtain in heading face[J]. Safety in Coal Mines, 2023, 54(3): 85-92.
    Citation: YAN Jingjing, WANG Fei, LI Yucheng, LIU Hongwei, GAO Yabin, LI Ziwen. Research on evaporation and humidification characteristics of spray water curtain in heading face[J]. Safety in Coal Mines, 2023, 54(3): 85-92.

    掘进工作面喷雾水幕蒸发增湿特性研究

    Research on evaporation and humidification characteristics of spray water curtain in heading face

    • 摘要: 为了研究掘进工作面喷雾水幕蒸发增湿特性对巷道相对湿度的影响,建立了喷雾空间相对湿度计算模型,模拟探究了不同控制参数对掘进巷道相对湿度的影响规律。结果表明:喷雾液滴蒸发增湿数学模型可以有效预测巷道相对湿度;喷雾流量与雾化压力、风筒供风量、环境温度与湿度对巷道相对湿度具有显著的影响;优化参数既能有效降低喷雾增湿对巷道湿度的影响范围,又能提高喷雾后排湿效率。

       

      Abstract: To study the effect of evaporation and humidification characteristics of spray water curtain on the relative humidity of the tunnel, the calculation model for relative humidity was established in the spray space. The effect of different control parameters on the humidity in the tunnel was explored based on numerical simulation. The results show that the mathematical model of spray droplet evaporation and humidification can effectively predict the relative humidity of roadway; the spray flow rate and atomization pressure, the air supply volume of the air duct, the ambient temperature, and humidity all contributed significantly to the relative humidity of the tunnel. By optimizing the parameters, it is possible to not only reduce the effective range of spray humidification on tunnel humidity but to also improve the moisture removal efficiency after spraying.

       

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