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Experimental study on ventilation supply–demand matching to dispense the stope gas disaster risk of coal mines

机译:通风供需匹配匹配分配煤矿分离煤气灾害风险的试验研究

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During coal mine production, the unbalanced emission of stope gas and other toxic and harmful gases can easily lead to major disasters and accidents. In view of the structural characteristics of coal mine excavation ventilation system, a three-dimensional ventilation network (VN) experimental model with an independent stope is constructed and regulated fan frequency conversion (FC) is developed. The concept of influenced degree is proposed, and it is quantified for the stope branch in a complex VN model. An experiment is conducted on FC and air-regulating dilution of quantitative gas release. It is concluded that the gas concentration in the stope of a working face has a power function relationship with the working frequency of the fan. According to mining replacement characteristics, five wind regulation rules for supply and demand matching (SDM) were set during a working day, and the feasibility of dynamic treatment and control adjustment of the gas emission at the mining surface was verified experimentally. Finally, the dynamic SDM control model of stope ventilation has been applied in a mine operated by the Yangquan coal mine. The results show that the stope gas disaster risk can be dispensed quickly and effectively when the emission is unbalanced.
机译:在煤矿生产过程中,采伐气体和其他有毒气体的不平衡排放可以很容易地导致主要的灾害和事故。鉴于煤矿挖掘通风系统的结构特征,构造了具有独立突厥的三维通气网络(VN)实验模型,并开发了调节风扇变频转换(FC)。提出了影响程度的概念,并且在复杂VN模型中为Stope分支量化。对Fc进行实验和定量气体释放的空气调节稀释。结论是,工作面的空气浓度在工作面上具有与风扇的工作频率的功率功能关系。根据采矿替代特征,在工作日设定了五种供需匹配(SDM)的风调控规则(SDM),实验验证了采矿表面的动态处理和控制调整的动态治疗和控制调整的可行性。最后,在阳泉煤矿运营的矿井中应用了Stope通风的动态SDM控制模型。结果表明,当排放不平衡时,可以快速有效地分配空气灾害风险。

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