Wu Tong, Yang Zhuo, Wang Aiai, Zhang Kai, Wang Bo
China Coal Technology & Engineering Group Shenyang Engineering Company, Shenyang, Liaoning,, China.
China Coal Technology & Engineering Group Chongqing Research Institute, Chongqing, China.
Sci Rep. 2021 Jul 19;11(1):14703. doi: 10.1038/s41598-021-94131-6.
Previous simulation studies of dust particles movement behavior in open-pit coal mines only aimed at a single operation link, and the macro simulation is lacking. This study seeks to explore microscopic migration and macroscopic diffusion of dust particles in the mining area by numerical simulation method. The movement characteristics revealed, and the distribution law of the dust particles in a stable state with the corresponding migration paths in the mining area were obtained respectively. The results showed that the increase amplitude of dust particles diffusion velocity was inversely proportional to particle size, which was vital for dust pollution in the mine. And the larger the particle size in the mining pit was, the lower the escape rate of the dust particles was. Dust particles distributed over a wide range that were not limited by space height, and the distribution characteristics of dust particles at different heights were basically the same. Meanwhile, it is found that the dust distribution in the two places is relatively concentrated due to the circulation phenomenon of the mining pit and the west dump. And wind action would accelerate the moving dust particles to reach a stable distribution state.
以往对露天煤矿粉尘颗粒运动行为的模拟研究仅针对单一作业环节,缺乏宏观模拟。本研究旨在通过数值模拟方法探索矿区粉尘颗粒的微观迁移和宏观扩散。分别揭示了其运动特性,得出了矿区粉尘颗粒在稳定状态下的分布规律及相应迁移路径。结果表明,粉尘颗粒扩散速度的增加幅度与粒径成反比,这对矿井粉尘污染至关重要。且矿坑内粒径越大,粉尘颗粒的逃逸率越低。粉尘颗粒分布范围广,不受空间高度限制,不同高度处粉尘颗粒的分布特征基本相同。同时发现,由于矿坑与西排土场的环流现象,两地的粉尘分布相对集中。且风力作用会加速运动的粉尘颗粒达到稳定分布状态。