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作 者:Kayode M.Ajayi Khosro Shahbazi Purushotham Tukkaraja Kurt Katzenstein
机构地区:[1]Department of Mechanical Engineering,SDSMT,Rapid City,SD 57701,USA [2]Department of Mining Engineering and Management,SDSMT,SD 57701,USA [3]Department of Geology and Geological Engineering,SDSMT,SD 57701,USA
出 处:《International Journal of Mining Science and Technology》2019年第5期781-784,共4页矿业科学技术学报(英文版)
基 金:support from the National Institute for Occupational Safety and Health(NIOSH)(No.200-2014-59613)for conducting this research.
摘 要:The configuration of an airway(or production drift)in panel cave mines is different from the typical(straight)mine airway designs.The drawpoints are connected to the airway(cross-cuts),which allows airflow from the cave into the airway or air loss from the airway into the cave due to the ventilation approach and cave porosity.These affect airflow in the production drifts,but it is difficult to investigate these conditions from field or laboratory scaled studies.Therefore,this study develops discrete and continuum computational fluid dynamics(CFD)models to study the effects of the ventilation approach and cave porosity on the airway resistance.Our findings show that:with active undercut ventilation,a unique resistance model is required for the airway in panel cave mines;and an increase in cave porosity decreases the drift’s resistance.These findings provide essential tools for a panel cave ventilation design.
关 键 词:AIRWAY resistance CAVING mining method PANEL CAVE mines Broken ROCKS POROUS media Computational fluid dynamics(CFD)
分 类 号:TD72[矿业工程—矿井通风与安全]
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