冯博, 卢晓龙, 王峰. 综采工作面采煤机在不同区域粉尘逸散规律数值模拟[J]. 煤矿安全, 2018, 49(11): 176-179.
    引用本文: 冯博, 卢晓龙, 王峰. 综采工作面采煤机在不同区域粉尘逸散规律数值模拟[J]. 煤矿安全, 2018, 49(11): 176-179.
    FENG Bo, LU Xiaolong, WANG Feng. Numerical Simulation of Laws of Dust Dispersion of Coal Cutter Working at Different Regions of Fully Mechanized Coal Mining Face[J]. Safety in Coal Mines, 2018, 49(11): 176-179.
    Citation: FENG Bo, LU Xiaolong, WANG Feng. Numerical Simulation of Laws of Dust Dispersion of Coal Cutter Working at Different Regions of Fully Mechanized Coal Mining Face[J]. Safety in Coal Mines, 2018, 49(11): 176-179.

    综采工作面采煤机在不同区域粉尘逸散规律数值模拟

    Numerical Simulation of Laws of Dust Dispersion of Coal Cutter Working at Different Regions of Fully Mechanized Coal Mining Face

    • 摘要: 为了探究综采工作面采煤机在不同区域的粉尘逸散规律,基于离散颗粒模型对综采工作面的粉尘扩散规律进行了数值模拟。模拟结果显示,采煤机在不同区域时粉尘扩散具有相似的规律性。采煤机在前部时,粉尘扩散范围最广,对人行道污染最严重;在中部时,粉尘运移时间较短,扩散范围缩小,对回风巷造成了一定污染;在后部时,粉尘扩散范围有限,但严重污染了回风巷。从整体上看,在不同区域粉尘煤机前滚筒及其下风侧附近常有高浓度粉尘团,其浓度高达4 000 mg/m3;移架产尘会随风流不断沉降,采煤机在中部及后部时对回风巷造成较大污染。

       

      Abstract: In order to study the laws of dust dispersion of coal cutter working at different regions of fully mechanized coal mining face, numerical simulation was conducted for the law of dust dispersion of the fully mechanized coal mining face based on the discrete particle model. The simulation result shows that dust dispersion has the same laws when the coal cutter works at different regions. When the coal cutter works at the front, the dust dispersion range is the widest, and the pollution to the sidewalk is also the most serious. When it is at the middle, the dust flying time is short, and the range of dispersion is smaller, but it also causes certain pollution to the return airway. When it works at the back, the dust dispersion range is limited, but it can cause serious pollution to the return airway. On the whole, high concentration of dust particles is often found in the front roller and the lower wind side of the dust coal machine in different areas, and the concentration is as high as 4 000 mg/m3. The dust produced from the movement of the supports will settle along with the air flow, and when the coal cutter works at the middle and the rear, it will cause heavier pollution to the return airway.

       

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