煤炭工程 ›› 2024, Vol. 56 ›› Issue (7): 143-150.doi: 10.11799/ce202407022

• 研究探讨 • 上一篇    下一篇

井下转载破碎点粉尘分布特征及降尘系统研究

郝永江,折瀚东,赵振保   

  1. 1. 太原科技大学
    2. 北京大学
  • 收稿日期:2023-03-02 修回日期:2024-03-22 出版日期:2024-07-20 发布日期:2024-07-20
  • 通讯作者: 郝永江 E-mail:haoyongjiang@163.com

Study on Dust Distribution Characteristics and Dust Reduction System of Transfer and Crushing Point Underground

  • Received:2023-03-02 Revised:2024-03-22 Online:2024-07-20 Published:2024-07-20

摘要: 为了改善综放工作面转载破碎区域的工作环境,结合粉尘分散度分析和现场实测得出转载机机头前1 m处、破碎机处及前刮板机和后刮板机处是四个主要的产尘位置。其中,转载机机头前1 m处持续不断地产生呼吸性粉尘,其PM5占比高达85.19%,原因在于煤块与带式输送机猛烈撞击后产生大量呼吸性粉尘;破碎机处也产生大量呼吸性粉尘,但积累呼尘的速率相对较慢,其 PM10占比可达98%,这些粉尘主要来源于两防护罩间由于连接不吻合而产生的缝隙;前刮板机和后刮板机处可吸入粉尘占比相对稳定且比例较高,粉尘粒度分布相对均匀,这是由于此处煤块普遍较大且携带较高的势能,下落后产生大量微细粉尘。并根据每个产尘点的特性采用不同的喷雾降尘技术并设计相应的降尘系统:转载点喷雾形成全断面喷雾抑尘,破碎机喷雾将粉尘封闭在破碎机内部并沉降,前后刮板机喷雾利用雾群将粉尘完全覆盖。最后通过现场检验, PM5和PM10粉尘的降尘率都达到85%左右,降尘效果良好。

关键词: 转载, 破碎, 呼吸性粉尘, 粉尘分布, 降尘系统

Abstract: In order to improve working conditions of transfer and crushing zone in fully mechanized caving face, the dust distribution characteristics of the transfer and crushing point are mastered by dust dispersion analysis and field measurement firstly, and four main dust producing points and their causes are obtained. The PM5 of the dust at 1m of the reversed loader head accounts for 85.19%. After the coal and the belt conveyor hit violently, a large amount of respirable dust is produced. The PM10 proportion of dust at the crusher can reach 98%, which comes from the gap between the two protective cover due to the connection not matching. The dust particle size distribution is rel-atively uniform at the front and back passes, mainly because the coal is generally larger and carries higher potential energy, and a large amount of dust is generated after the fall. Respirable dust is continuously generated at 1m of the reversed loader head. A large amount of respirable dust is also produced at the crusher, but the rate of accumulated respirable dust is relatively slow, and the proportion of inhalable dust at the front and back passes is relatively sta-ble and high. Then according to the characteristics of each dust production point, different spray dust reduction system is used and the corresponding dust reduction device is designed. The transfer point spray system forms a full-section spray dust suppression, the crusher spray system seals the dust in the crusher and settles, and the front and back passes spray system uses fog to completely cover the dust. Finally, through field inspection, it has a good dust reduction effect.

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