首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Simulation analysis and engineering application of distribution characteristics about multi-stage atomization field for cutting dust in fully mechanized mining face
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Simulation analysis and engineering application of distribution characteristics about multi-stage atomization field for cutting dust in fully mechanized mining face

机译:多级雾化领域分布特性的仿真分析与工程应用,用于综合机械化粉末切割粉尘

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摘要

To improve the dust suppression efficiency of the external spray systems of shearers, a dust reduction method consisting of shearer external multi-stage atomization and dust removal fan was proposed. Computational fluid dynamics-based numerical simulation was combined with atomization experiments to analyze the migration and distribution of the cutting dust and multi-stage atomization field under airflow at the 2307 fully mechanized mining face of the Tangkou mine. The results show that with adding dust removal fan and multi-stage atomization points, the peak area of wind speed appeared on both sides of the shearer, and the wind speed was greater than 2.7 m/s, the dust concentration on the downside side of the shearer decreased, the spray coverage area increased significantly, and the droplet concentration at the shearer drum was the largest, exceeding 0.05 kg/m(3). According to the research results, the multi-stage atomization arrangement of single-fluid water nozzles of shearer was put forward, and the field application was carried out. Compared with the engineering application results of the single-stage atomization dust suppression system, the total dust reduction rate of the synergistic effect of multi-stage atomization external spray with dust removal fan for the shearer is 87.12%, which is 38.59% higher than that of the conventional single-stage atomization dust suppression system. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:为了提高剪切刀外部喷涂系统的灰尘抑制效率,提出了由剪切器外部多级雾化和除尘风扇组成的除尘方法。基于计算的流体动力学的数值模拟与雾化实验相结合,分析了汤口矿的2307综采矿面的气流下切割灰尘和多级雾化场的迁移和分布。结果表明,随着添加除尘风扇和多级雾化点,风速的峰面积出现在采煤机的两侧,风速大于2.7米/秒,截止侧的灰尘浓度剪切器减少,喷涂面积显着增加,剪切器鼓的液滴浓度最大,超过0.05kg / m(3)。根据研究结果,提出了采煤机单流体水喷嘴的多级雾化布置,进行了现场应用。与单级雾化污染系统的工程应用结果相比,多级雾化外部喷雾带除尘风扇的协同效应的总除尘率为87.12%,比该灰尘除尘风扇为87.12%,高于38.59%传统的单级雾化灰尘抑制系统。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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