4.7 Article

Research on dust removal technology of large eddy dust collecting and swirl airflow distribution in the fully-mechanized excavation face

期刊

POWDER TECHNOLOGY
卷 411, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.powtec.2022.117922

关键词

Fully-mechanized heading face; Ventilation and dust removal; Large eddy dust collecting; Swirl airflow distribution; Cleaner production

资金

  1. Young Scientists Fund
  2. Key Technologies Research and Development Pro-gram
  3. [52104202]
  4. [2017YFC0805203]

向作者/读者索取更多资源

In this study, a dust removal technology of large eddy dust collecting and swirl airflow distribution was investigated to address the problem of dust pollution at the fully-mechanized excavation face. The results demonstrated that the new technology can effectively remove dust and greatly improve the working environment.
Aiming at the tricky problem of dust pollution at the fully-mechanized excavation face, the dust removal technology of large eddy dust collecting and swirl airflow distribution was studied. This method divides the space in the tunnel into two air field by airflow distributor. An air-dust coupling model was established to study the law of air field and dust migration. The results show that the upward-tilt angle alpha and back-tilt angle beta of the side outlet of the airflow distributor have a great influence on the formation of reverse swirl airflow. With the increase of alpha in the range of 20- 35 degrees, the intensity of transverse dust control eddy first increases and then decreases. With the increase of beta in the range of 0 degrees similar to 20 degrees, the dust control effect is enhanced. The back-tilt angle gamma of the airflow blown by the end outlet of airflow distributor to the heading face can reduce the air disorder, and the transverse dust control eddy can be formed. Similarity experiments show that the actual dust diffusion distance corresponding to the tracer fog dust is 9.8 m, and the relative error is about 5.1% compared with the simulation results in this paper. With the new technology, the dust removal efficiency is up to 98.3%, and the working environment during the tunneling process will be greatly improved.

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