井下受限空间防爆车尾气CO扩散运移规律数值模拟分析

Numerical simulation and analysis of CO diffusion and migration law of explosion-proof vehicle exhaust in confined underground space

  • 摘要: 随着智能化矿井的建设与实施,防爆柴油车已被广泛用于井下运输。由于煤矿巷道空间相对狭小和封闭、气体流通条件较差,其作业过程中产生的CO不易排出,对作业设施及工作人员的安全造成了潜在威胁。为此,利用Fluent软件模拟井下防爆柴油车怠速启动状态,探究风量、风向以及温度多因素条件下防爆柴油车尾气中CO的扩散运移规律。结果表明:防爆柴油车受到与行驶方向同向的顺风作用时,风速较小情况下CO沿水平方向排出且有横向运移趋势,随风速的提高CO运移范围会明显缩小,且少量CO有向下运移趋势;当受到逆风作用时,风速较小情况下CO存在向后上方运移的趋势,随风速的提高CO运移范围缩小且有横向运移趋势;当温度升高时,CO的运移范围增大且积聚的CO浓度提高。

     

    Abstract: With the construction and implementation of intelligent mine, explosion-proof diesel vehicles have been widely used for underground transportation. Because the coal mine roadway space is relatively small and closed, the gas flow condition is poor, and the CO generated in the operation process is not easy to discharge, which poses a potential threat to the operation facilities and staff. To this end, Fluent software was used in this paper to simulate the situation of explosion-proof diesel vehicles under idle start condition, and the law of CO diffusion and migration in the exhaust gas of explosion-proof diesel vehicles under the multi-factor conditions of air volume, wind direction and temperature was explored. The results show that when the explosion-proof diesel vehicle is subjected to tailwind in the driving direction, CO is discharged in the horizontal direction and has the trend of lateral migration when the air volume is small, and the migration range of CO is significantly reduced with the increase of the wind speed, and a small amount of CO has the trend of downward migration. In case of headwind, CO migrates backward and upward when the wind speed is low, and CO migrates laterally when the wind speed increases. When the temperature increases, the migration range of CO increases and the concentration of CO increases.

     

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