Chen Jingxu, Zhi Yongkai
School of Mining and Coal, Inner Mongolia University of Science and Technology, Baotou, 014010, China.
Inner Mongolia Key Laboratory of Mining Engineering, Baotou, 014010, China.
Sci Rep. 2024 Dec 2;14(1):29844. doi: 10.1038/s41598-024-81560-2.
The dust source point in the coal-breaking operation prolonged activities generate substantial dust, diminished the air quality at the tunneling face. This study focuses on the pneumatic vortex fog curtain dust control system in the underground coal mine tunneling face. It explores the dust-trapping performance of this system under the disturbance of a long-pressure and short-suction auxiliary ventilation system. The results indicate that the respiratory dust captured by the fog curtain wall on the driver's working side can be reduced from an average concentration of 135.5 mg/m to 2.5 mg/m, and on the 15 m downwind side of the coal-cutting machine, it decreases from 70.2 mg/m to 2.5 mg/m. Under the disturbance of the long-pressure and short-suction ventilation system, as the wind speed increases, the rotating fog curtain gap expands, reducing the sealing performance. Without compromising the fog curtain conditions, this combined system achieves efficient dust suppression, significantly improving the working environment at the tunneling face.
破煤作业中尘源点的长时间活动产生大量粉尘,降低了掘进工作面的空气质量。本研究聚焦于煤矿井下掘进工作面的气动涡旋雾幕降尘系统。探讨了该系统在长压短抽式辅助通风系统扰动下的捕尘性能。结果表明,雾幕墙在司机工作侧捕获的呼吸性粉尘平均浓度可从135.5毫克/立方米降至2.5毫克/立方米,在采煤机下风侧15米处,可从70.2毫克/立方米降至2.5毫克/立方米。在长压短抽通风系统的扰动下,随着风速增加,旋转雾幕间隙扩大,密封性能降低。在不影响雾幕条件的情况下,该组合系统实现了高效抑尘,显著改善了掘进工作面的工作环境。