煤炭工程 ›› 2024, Vol. 56 ›› Issue (5): 89-94.doi: 10.11799/ce202405014

• 生产技术 • 上一篇    下一篇

大采高综采工作面尘源跟踪喷雾降尘关键技术及其应用

刘立仁,吕明杰,郑 磊,何生田   

  1. 1. 陕西德源府谷能源有限公司 三道沟煤矿,陕西 府谷 719400

    2. 中煤科工集团重庆研究院有限公司,重庆 400037

  • 收稿日期:2023-12-22 修回日期:2024-02-18 出版日期:2023-05-20 发布日期:2025-01-03
  • 通讯作者: 刘立仁 E-mail:3363652423@qq.com

Key technology of dust source tracking spraying dust reduction in fully mechanized mining face#br#

  • Received:2023-12-22 Revised:2024-02-18 Online:2023-05-20 Published:2025-01-03

摘要:

为提高煤矿井下大采高综采工作面粉尘捕获、沉降效率,针对大采高工作面空间分布广、粉尘运移范围大、传统喷雾方式不能有效覆盖产尘源等问题,在分析大采高综采工作面喷雾降尘效率影响因素的基础上,通过激光雾径测试平台、流量监测装置及多谱勒激光粒度分析仪测试喷嘴雾化参数,研发尘源跟踪喷雾降尘系统,实现了采煤机截割滚筒“三维立体”跟踪喷雾降尘。研究结果表明:大采高综采工作面喷雾降尘效率与喷嘴耗水量、喷雾覆盖面积和雾滴粒径等参数有关,并以此建立降尘效率公式;风速对喷嘴雾化降尘效率有重要影响作用, 对每个单独喷嘴而言,风速的增加会降低喷嘴的降尘效率;根据计算得出不同风速条件下各喷嘴的降尘效率结果,优先推荐的喷嘴是SS1507;研制了一种具有流量控制功能的尘源跟踪喷雾降尘系统,实现跟踪喷雾降尘的可控及减少耗水量;并在三道沟煤矿85219大采高综采工作面进行现场应用,应用后上滚筒采煤机位置总粉尘和呼吸性粉尘降尘效率分别为91.15%和81.96%,下滚筒采煤机位置总粉尘和呼吸性粉尘降尘效率分别为90.61%和83.54%,该喷雾降尘技术显著降低85219大采高综采工作面空间的粉尘浓度,对矿山安全生产以及改善职工作业环境具有重要的意义。

关键词: 大采高综采面, 粉尘污染, 尘源跟踪, 喷雾降尘

Abstract:

Abstract: To improve the dust capturing and settling efficiency of the large-height comprehensive mining face in the coal mine, based on the analysis of the influencing factors of the dust reduction efficiency of the large-height comprehensive mining face and the testing of the nozzle atomization parameters through the laser fog diameter testing platform, flow monitoring device and multi-spectral laser particle size analyzer, the dust source tracking spray reduction system was developed to realize the "three-dimensional" tracking spray reduction of the cutting drum of the coal mining machine. The research and development of a dust source tracking spray dust reduction system realize the "three-dimensional" tracking spray dust reduction of the cutting drum of a coal mining machine. The results of the study show that: the dust reduction efficiency of spraying in large mining face is related to the parameters of nozzle water consumption, spraying coverage area and droplet size, and the dust reduction efficiency formula is established accordingly; the wind speed has an important influence on the dust reduction efficiency of the nozzle atomization, and the increase of the wind speed decreases the dust reduction efficiency of the nozzles for each individual nozzle; according to the results of the calculation of the dust reduction efficiency of the nozzles under the conditions of different wind speeds, the preferred recommended nozzle is SS150 The preferred nozzle is SS1507; a dust source tracking spraying system with flow control function is developed to realize the controllable tracking spraying dust reduction and reduce the water consumption; and it is applied on site in the large-height comprehensive mining face of 85219 in Sandaogou Coal Mine, and the total and respiratory dust reduction efficiencies of the upper drum position are 91.15% and 81.96% respectively, and the lower drum position is 91.15% and 81.96% respectively. After application, the total dust and respiratory dust reduction efficiency of the upper drum miner position is 91.15% and 81.96% respectively, and the lower drum miner position is 90.61% and 83.54% respectively. This spraying dust reduction technology significantly reduces the dust concentration in the space of the 85219 large-height comprehensive mining face, which is significant for the safe production of the mines as well as for the improvement of the workers' working environment.

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