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Diffusion and pollution of multi-source dusts in a fully mechanized coal face

机译:综合机械化煤面中多源粉尘的扩散与污染

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In order to provide theoretical guidance for dust prevention and treatment, as well as environmental protection for mines, we investigated the diffusion and pollution of multiple sources in a fully mechanized coal face using CFD-DPM based airflow-dust coupling method, and analyzed the distributions of dust particle diameter at different positions. Results show that, the air was mainly leaked from three positions in the mining area, 6m away from the air inlet on the leeward side, the position where the hydraulic prop was moved and the middle part of the shearer. A high-velocity airflow zone was formed around the shearer's front roller, with airflow velocity up to 2.2 m/s. The dusts produced by the advancing support were superposed with the dusts from the roller's coal cutting, and a high-concentration dust zone with a length of approximately 2 m was formed at the front roller, with dust concentration as high as 3000 mg/m(3). Within 40 m from the air outlet, a great number of dusts larger than 70 mu m settled. Finally, the field measured results of airflow and dust concentration verified the accuracy of the simulation of dust diffusion and pollution behaviors in the fully mechanized coal face. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:为了提供防尘和治疗的理论指导,以及矿山的环境保护,我们使用CFD-DPM基于基于CFD-DPM的气流耦合方法研究了多种来源的扩散和污染,并分析了分布不同位置的灰尘粒径。结果表明,空气主要从采矿区中的三个位置泄漏,距离背风侧的空气入口6米,液压道具移动的位置以及剪切器的中间部分。在剪切者的前辊周围形成高速气流区,气流速度高达2.2米/秒。通过推进的支撑件产生的灰尘叠加着从辊煤切割的灰尘叠加,在前辊处形成长度约为2米的高浓度的粉尘区,粉尘浓度高达3000mg / m( 3)。距离空气出口范围内的40米,大量灰尘大于70亩。最后,气流和灰尘浓度的田间测量结果验证了综合机械化煤层中的灰尘扩散和污染行为模拟的准确性。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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