张双楼煤矿深井热害控制技术研究
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摘要
本文运用工程地质学、通风安全学、工程热力学、煤矿开采学等理论知识,根据张双楼煤矿井田地质构造条件,研究了张双楼煤矿深井热害温度场发育规律,分析了张双楼煤矿地温场异常的原因,总结了张双楼煤矿深井热害微气候特征,并绘制了张双楼煤矿夏季深井热害微气候焓湿图(i-d图)和等湿密度图(d-ρ图)。根据张双楼煤矿深井热害微气候特征及水文地质条件,提出张双楼煤矿深井热害微气候控制对策,即HEMS深井热害控制工艺系统。根据矿井涌水丰富程度,对HEMS深井热害控制系统冷源进行了分类。对HEMS深井热害控制系统调试,进行了运行数据的分析,对运行平衡参数进行了计算,对采煤工作而和掘进上作面降温效果进行了分析。张双楼煤矿HEMS深井热害控制系统,取得良好的降温效果。
According to the geological tectonic conditions of Zhangshuanglou Coal Mine, The temperature field development law of heat damage is studied, the geothermal anomaly is analyzed and the microclimate characteristics of deep mine heat damage(DMHD) is summarized in the Mine, all of which based on the knowledge of Engineering Geology, Ventilation Security, Engineering Thermodynamics, Coal Mining. At the same time, the deep mine heat damage microclimate enthalpy humidity chart(i-d chart) and wet density map (d-ρ map) in summer days are depicted. The control strategy of microclimate characteristics of DMHD, which is the control system of DMHD, is proposed on the basis of the microclimate characteristics of DMHD and the hydrogeological conditions in Zhangshuanglou Coal Mine. The cold sources of DMHD control system are classified on the ground of the amount of mine swallet. Moreover, the control system is debugged, the operational data is analyzed, the running balance parameters are calculated and the control effect of working face and tunneling face are analysed. In sum, HEMS control system of DMHD obtained a significant effect in Zhangshuanglou Coal Mine.
引文
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