首页|掘进工作面智能控风除尘系统研究

掘进工作面智能控风除尘系统研究

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根据智慧矿山发展需求,为降低煤矿井下掘进工作面工人粉尘接触量,提高粉尘集中治理效率,采用实验和模拟的方法分析风筒出风口不同角度对粉尘浓度分布的影响,以呼吸带、司机处粉尘浓度最低为第一原则,粉尘集中处理为次要原则选择风筒最优出风角度.研究表明,风筒出风口与迎头距离为5、7、9m时,最优风筒出风口角度分别为上60°、左45°、左30°,粉尘浓度集中处理点分别为(10、2.5、2.8 m)、(2、2.5、3 m)、(4.5、2.5、3m).针对粉尘浓度集中点设计智能控风除尘系统,通过实时监测风筒与迎头距离,动态调整风筒出风口角度和喷头位置,达到定向集中喷雾降尘和降低工人粉尘接触量的目的,为建设智能化清洁矿井提供理论依据.
Research on intelligent air control and dust removal system in heading face
According to the development needs of smart mines,in order to reduce the dust exposure of workers in the tunneling face of coal mines and improve the efficiency of dust concentration control,the influence of different angles of the air outlet of the air duct on the distribution of dust concentration was analyzed by experiments and simulations.The minimum dust concentration at the breathing zone and the driver is the first principle,and the dust concentration treatment is the secondary principle to select the optimal air outlet angle of the air duct.The results show that when the distance between the outlet of the air duct and the head is 5 m,7 m and 9 m,the optimal outlet angles of the air duct are 60°,45° and 30° respectively,and the centralized treatment points of dust concentration are(10 m,2.5 m and 2.8 m),(2 m,2.5 m and 3 m),(4.5 m,2.5 m and 3m)respectively.An intelligent air control and dust removal system is designed for the dust concentration point.The angle of the air outlet and the position of the nozzle are dynamically adjusted by real-time monitoring of the distance between the air duct and the head,so as to achieve the purpose of directional centralized spray dust reduction and reduce the dust exposure of workers,and provide a theoretical basis for the construction of intelligent clean mines.

heading facedust distributionintelligent wind controldirectional spray

张平哲、齐艺裴、姜伯洋、李嘉、王福生、陈思锦

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华北理工大学 应急管理与安全工程学院,河北 唐山 063210

河北省矿业开发与安全技术重点实验室,河北唐山 063210

掘进工作面 粉尘分布 智能控风 定向喷雾

2024

煤炭与化工
河北省化学工业研究院

煤炭与化工

影响因子:0.246
ISSN:2095-5979
年,卷(期):2024.47(10)