264 / 2018-03-28 13:21:52
Study on Dust Transport Law and Effect of Dust Removal in Ore Unloading Station
ore unloading station; dust; concentration distribution; numerical simulation; air-water spray
全文录用
Jihe Chen / University of Science and Technology Beijing
Zhongan Jiang / University of Science and Technology Beijing
A large amount of dust is generated during unloading from unloading pit, which seriously pollutes the roadway air. According to the actual situation of the unloading station, the k-ε double equation model was used to simulate the dust transport and concentration distribution in the roadway during unloading,and the movement law of dust particles was obtained. We also obtained the distribution of dust concentration of the plane on x = -15 and the line of y = 0 in breathing zone height at different times. Studies have shown that when unloading, a huge impact airflow is generated in the unloading pit. When the impact airflow rushes into the roadway, it carries a large amount of dust in the unloading pit and pollutes the air in the roadway. There is a large difference in dust concentration on various points of the longitudinal section of the downwind roadway. However, the value of the dust concentration on breathing zone height can be selected as the average dust concentration of the roadway. Spraying device should be installed on the falling ore surface and directly above the falling ore surface. Spraying time should not be lower than 120s. The “barrier surface” and “closed belt” formed by the air-water spray device can effectively prevent the dust from diffusing into the roadway.
重要日期
  • 会议日期

    10月22日

    2018

    10月24日

    2018

  • 05月31日 2018

    摘要截稿日期

  • 07月05日 2018

    初稿截稿日期

  • 08月10日 2018

    初稿录用通知日期

  • 10月24日 2018

    注册截止日期

主办单位
北京科技大学
McGill University
中国矿业大学(北京)
河南理工大学
University of Wollongong
东北大学
重庆大学
中国矿业大学
Laurentian University
辽宁工程技术大学
西安科技大学
北方工业大学
江西理工大学
黑龙江科技大学
协办单位
中国职业安全健康协会
中国安全生产科学研究院
煤炭信息研究院
中安安全工程研究院
International Journal of Mining Science and Technology
Safety Science
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