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采煤方法的探究
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作者 索东希 《东西南北(教育)》 2017年第7期184-184,共1页
煤矿开采方法有着其丰厚的理论及经验背景,为了实现对我国复杂多变的煤矿类型的良好开采,我们需要不断深入总结和探索,掌握先进的技术方法,同时积极引进和推广高功率、程序化的开采设备和技术,才能实现煤矿开采技术水平的不断提高,进而... 煤矿开采方法有着其丰厚的理论及经验背景,为了实现对我国复杂多变的煤矿类型的良好开采,我们需要不断深入总结和探索,掌握先进的技术方法,同时积极引进和推广高功率、程序化的开采设备和技术,才能实现煤矿开采技术水平的不断提高,进而促进煤矿行业的进一步发展。 展开更多
关键词 煤矿 采煤方法 深井采煤 “三下”采煤
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深煤井瓦斯事故的安全处理措施
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作者 王美英 《大观周刊》 2013年第11期89-89,共1页
露天采矿是地表资源存储量逐渐减少,神经采煤是行业发展的必然趋势。新时期国内煤炭企业开始深井采煤,以满足社会对原煤资源的使用需求。深井采煤常面临瓦斯事故风险,为了保证井内采煤的安全进行,需提前制定瓦斯事故处理措施。分析... 露天采矿是地表资源存储量逐渐减少,神经采煤是行业发展的必然趋势。新时期国内煤炭企业开始深井采煤,以满足社会对原煤资源的使用需求。深井采煤常面临瓦斯事故风险,为了保证井内采煤的安全进行,需提前制定瓦斯事故处理措施。分析了深井瓦斯事故的危害性.对其安全处理提出有效建议。 展开更多
关键词 深井采煤 瓦斯事故 危害性安全 措施
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Comprehensive analysis of safe mining to heavy and steep coal seam under complex geophysics environment 被引量:3
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作者 王宁波 李立波 +1 位作者 来兴平 柴鑫 《Journal of Coal Science & Engineering(China)》 2008年第3期378-381,共4页
In virtue of effect of N-S intensive ground stress and mining disturbance to +579E2EB_(1+2) mining site at Weihuliang Mine,the dip angle and section height is 65° and 52 m,respectively,the collapses happed freque... In virtue of effect of N-S intensive ground stress and mining disturbance to +579E2EB_(1+2) mining site at Weihuliang Mine,the dip angle and section height is 65° and 52 m,respectively,the collapses happed frequently during mining.Firstly,mining condi- tions,spatial structure and parameters were investigated.Then physical simulation and dynamic numerical tracing and elaborate simulation relating roof and top-coal were ap- plied based on 2D-Block Program and quantitative regularity of stress at variable depths had been estimated.Furthermore,it was manifested that effective measures,i.e.,fast mining,control symmetrical top-coal-caving at dip and strike directions,optimizing ventila- tion system,active-stereo preventing gas were performed successfully in mining practice. Ultimately,the derived dynamic hazard were prevented so as to safety mining. 展开更多
关键词 complex geophysics environment heavy-steep coal seam high-section-top- coal-caving(HSTCC) excavation disturbance zone(EDZ) dynamic destabilization
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Application of HEMS cooling technology in deep mine heat hazard control 被引量:45
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作者 HE Man-chao 《Mining Science and Technology》 EI CAS 2009年第3期269-275,共7页
This paper mainly deals with the present situation, characteristics, and countermeasures of cooling in deep mines.Given existing problems in coal mines, a HEMS cooling technology is proposed and has been successfully ... This paper mainly deals with the present situation, characteristics, and countermeasures of cooling in deep mines.Given existing problems in coal mines, a HEMS cooling technology is proposed and has been successfully applied in some mines.Because of long-term exploitation, shallow buried coal seams have become exhausted and most coal mines have had to exploit deep buried coal seams.With the increase in mining depth, the temperature of the surrounding rock also increases, resulting in ever increasing risks of heat hazard during mining operations.At present, coal mines in China can be divided into three groups, i.e., normal temperature mines, middle-to-high temperature mines and high temperature mines, based on our investigation into high temperature coal mines in four provinces and on in-situ studies of several typical mines.The principle of HEMS is to extract cold energy from mine water inrush.Based on the characteristics of strata temperature field and on differences in the amounts of mine water inrush in the Xuzhou mining area, we proposed three models for controlling heat hazard in deep mines:1) the Jiahe model with a moderate source of cold energy;2) the Sanhejian model with a shortage of source of cold energy and a geothermal anomaly and 3) the Zhangshuanglou model with plenty of source of cold energy.The cooling process of HEMS applied in deep coal mine are as follows:1) extract cold energy from mine water inrush to cool working faces;2) use the heat extracted by HEMS to supply heat to buildings and bath water to replace the use of a boiler, a useful energy saving and environmental protection measure.HEMS has been applied in the Jiahe and Sanhejian coal mines in Xuzhou, which enabled the temperature and humidity at the working faces to be well controlled. 展开更多
关键词 deep mine heat hazard mine classification mine water inrush heat hazard control model
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