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Numerical simulation of ventilation in blinding heading 被引量:1

Numerical simulation of ventilation in blinding heading
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摘要 The way of ventilation in all its forms and characteristics in the blinding heading was studied.On the basis of computational fluid dynamics (CFD) the turbulence model of restrained ventilation in blinding heading was set up,and the calculation boundary condi- tions were analyzed.According to the practice application the three-dimensional flow field of ventilation in blinding heading was simulated by the computational fluid dynamics soft- ware.The characteristics of the ventilation flow field such as the temperature field zone and the flow filed zone and the rule of the flow velocity were obtained.The ventilation in blinding heading under certain circumstances was calculated and simulated for optimiza- tion.The optimal ventilation form and related parameters under given condition were ob- tained.The rule of the ventilation in blinding heading was theoretical analyzed,which pro- vided reference for the research on the process of mass transfer,the rule of hazardous substances transportation and ventilation efficiency,provided a new method for the study of reasonable and effective ventilation in blinding heading. The way of ventilation in all its forms and characteristics in the blinding heading was studied. On the basis of computational fluid dynamics (CFD) the turbulence model of restrained ventilation in blinding heading was set up, and the calculation boundary conditions were analyzed. According to the practice application the three-dimensional flow field of ventilation in blinding heading was simulated by the computational fluid dynamics software. The characteristics of the ventilation flow field such as the temperature field zone and the flow filed zone and the rule of the flow velocity were obtained. The ventilation in blinding heading under certain circumstances was calculated and simulated for optimization. The optimal ventilation form and related parameters under given condition were obtained. The rule of the ventilation in blinding heading was theoretical analyzed, which provided reference for the research on the process of mass transfer, the rule of hazardous substances transportation and ventilation efficiency, provided a new method for the study of reasonable and effective ventilation in blinding heading.
出处 《Journal of Coal Science & Engineering(China)》 2008年第4期542-545,共4页 煤炭学报(英文版)
基金 the National Scientific and Technological Support Plan of China(2006BAK05B04-03)
关键词 煤矿 通风系统 数值模拟 煤巷 ventilation, blinding heading, computational fluid dynamics (CFD), numerical simulation
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  • 1秦文贵.放顶煤综采工作面主要防尘措施的实施与管理[J].煤矿安全,1994(9):38-40. 被引量:5
  • 2刘毅,蒋仲安,蔡卫,周凤增,郭达,刘保东.综采工作面粉尘浓度分布的现场实测与数值模拟[J].煤炭科学技术,2006,34(4):80-82. 被引量:50
  • 3向光全.粉尘的危害与防治措施[J].水利电力劳动保护,1996(3):15-16. 被引量:9
  • 4[1]McPherson, M J. Subsurface Ventilation and Environmental Engineering[M]. London: Chapman & Hall: 1993.522-602.
  • 5[2]Kertikou, V. Air temperature and humidity in dead-end headings with auxiliary ventilation[A]. Rava V. Proc. 6th Int. Mine Ventilation Congr[C]. Littleton: Society for Mining, Metallurgy, and Exploration, Inc., 1997. 269-275.
  • 6[3]Ross, A J, Tuck, M A, Stokes, M R & Lowndes, I S. Computer simulation of climate conditions in rapid development drivages[A]. Rava V. Proc. 6th Int. Mine Ventilation Congr[C]. Littleton: Society for Mining, Metallurgy, and Exploration, Inc., 1997. 283-288.
  • 7[4]Gao, J, Uchino, K. & Inoue, M. Simulation of the heat and moisture transfer between airway walls and mine air at a heading face with auxiliary ventilation system[A]. Stanislaw, W. Proc. 7rd Int. Mine Ventilation Congr[C].Cracow: Research & Development Center for Electrical Engineering and Automation in Mining EMAG, 2001.49-55.
  • 8[5]Gao, J, Uchino, K. & Inoue, M. Simulation of thermal environmental conditions in heading face with forcing auxiliary ventilation[J]. Shigen-To-Sozai, 2002, 118 (1): 9-15.
  • 9[6]Uchino, K. Study on the prediction of the airflow temperature in underground coal mines[D].Fukuoka: Kyushu University, 1974.
  • 10[7]Katsuki, M. & Nakayama, A. Numerical Simulation of Heat Flow[M]. Tokyo: Morikita Shuppan:1990.

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