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Experimental study and numerical simulation of gas/particle flow in tunneling of mine

Experimental study and numerical simulation of gas/particle flow in tunneling of mine
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摘要 Respiration particles can be collected into a dust catcher by an inside inhalingand outside pressing particle collector. The work environment of the grab operator in tunneling mining was improved when a dust catcher is placed before the working face of thegrab operator. The particle movement was affected by the gas flow. The flow field insideand outside the dust collector was simulated. The effect of the operating parameter wasanalyzed. The numerical results show a good approach to predict the gas flow and particledistribution in the inside and outside of the particle collector. Respiration particles can be collected into a dust catcher by an inside inhaling and outside pressing particle collector. The work environment of the grab operator in tunneling mining was improved when a dust catcher is placed before the working face of the grab operator. The particle movement was affected by the gas flow. The flow field inside and outside the dust collector was simulated. The effect of the operating parameter was analyzed. The numerical results show a good approach to predict the gas flow and particle distribution in the inside and outside of the particle collector.
出处 《Journal of Coal Science & Engineering(China)》 2009年第1期85-87,共3页 煤炭学报(英文版)
基金 Supported by National Key Basic Research and Development Scheme(2005CB221500) the Introduction of Talent Fund of Henan Polytechnic University(648201)
关键词 grab working face particle movement inside inhaling and outside pressing particle collector 数值模拟 隧道挖掘 气体流量 粒子流 地雷 实验 颗粒分布 除尘器
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