期刊文献+

Fault Tree Analysis of Dust Suppression Mechanism in a Spray System with Wetting Agent 被引量:2

Fault Tree Analysis of Dust Suppression Mechanism in a Spray System with Wetting Agent
在线阅读 下载PDF
导出
摘要 By using the fault tree analysis in reliability theory as the systematical analysis approach, the dust suppression mechanism in a spray system with wetting agent is shown in a logic tree and some graphical models. From these diagrams, all factors related to the spray system and their cause and effect relationship can be seen clearly. Based on the built logic tree, several mathematical models and new ideas for expressing the dust suppressing efficiency in the spray system are put forward. The significance of all factors related to the efficiency of suppressing dust is qualitatively described. Furthermore, the new concepts, such as, the effective reaction time between dust particle and droplet, the expansion phenomenon of laden dust droplet, the functions of volatile and the relative size distribution efficiency of wetting agent are presented. All this richenes the existing mechanism of dust abatement by spraying wetting agent. At last, several problems that need to be further investigated are also suggested in the paper. By using the fault tree analysis in reliability theory as the systematical analysis approach, the dust suppression mechanism in a spray system with wetting agent is shown in a logic tree and some graphical models. From these diagrams, all factors related to the spray system and their cause-and-effect relationship can be seen clearly. Based on the built logic tree, several mathematical models and new ideas for expressing the dust suppressing efficiency in the spray system are put forward. The significance of all factors related to the efficiency of suppressing dust is qualitatively described. Furthermore, the new concepts, such as, the effective reaction time between dust particle and droplet, the expansion phenomenon of laden dust droplet, the functions of volatile and the relative size distribution efficiency of wetting agent are presented. All this richenes the existing mechanism of dust abatement by spraying wetting agent. At last, several problems that need to be further investigated are also suggested in the paper.
机构地区 College of Resources
出处 《Journal of Central South University》 SCIE EI CAS 2000年第3期117-123,共7页 中南大学学报(英文版)
基金 ChinaScholarshipFundforReturnedfromAbroad!(No.975 14 0 0 8)
关键词 coal DUST SPRAY system WETTING agent FAULT TREE analysis MECHANISM efficiency approaches coal dust spray system wetting agent fault tree analysis mechanism efficiency approaches
  • 相关文献

参考文献12

  • 1Zeller W H.Laboratory tests for selecting wetting agents for coal dust control. Report of Information . 1983
  • 2Cybulski W B.Coal dust explosions and their suppression. . 1975
  • 3Anderson F G,Evans R L,Peluso R G.A study of dust control methods for continuous mining of coal. Information Circular . 1963
  • 4Courtney W G,Cheng L.Control of respirable dust by improved water sprays. Information Circular . 1976
  • 5Godard R R.Dust abatement activities within US steel coal operations. Coal Ages . 1967
  • 6Jin K.Effect of coal type on wetting by solutions of nonionic surfactants. International Mining and Minerals . 1999
  • 7Chander S,Mohal B R,Aplan F F.Wetting behavior of coal in the presence of some nonionic surfactants. Colloids and Surfaces . 1987
  • 8Papic MM,McIntyre A D.Surface active agents evaluated in Canadian study. Coal Age . 1973
  • 9WU C,MENG T R.System safety engineering in mines(in Chinese). . 1992
  • 10Mohal B R,Chander S.Surfactant adsorption and wetting behavior of freshly ground and aged coal. Respirable Dust Center Publications . 1987

同被引文献28

  • 1吴超,欧家才,周勃.Coupling of anionic wetting agents to dust of sulfide ores by dropping liquid method[J].Journal of Central South University of Technology,2005,12(6):737-741. 被引量:3
  • 2TORANO J, TORNO S, MENENDEZ M, GENT M. Auxiliary ventilation in mining roadways driven with roadheaders: Validated CFD modelling of dust behavior [J]. Tunnelling and Underground Space Technology, 2011, 26(1): 201-210.
  • 3KEN T X, PLUSH B, AZIZ N. Dust controls and monitoring practices on Australian longwalls [J]. Procedia Engineering, 20 1 1, 26 1417 -1429.
  • 4WANG De-ming. Mine ventilation and safety [M]. Xuzhou: China University of Mining and Technology Press, 2007:97 -110. (in Chinese).
  • 5PAGE S J, VOLKWEIN J C. Foams for dust control [J]. Engineering and Mining Journal, 1986, 187(10): 50-54.
  • 6U.S. Bureau of Mines (USBM). Novel foam application lowers longwall dust [M]. Pittsburgh: U.S. Department of the Interior, Bureau of Mines, 1989: 1-2.
  • 7WANG He-tang, WANG De-ruing, TANG Yah, QIN Bo-tao, XIN Hai-hui. Experimental investigation of the pertbrmance of a novel foam generator for dust suppression in underground coal mines [J]. Advanced Powder Technology, 2014, 25(3): 1053-1059.
  • 8LU Xin-xiao, WANG De-ruing, SHEN Wei, WANG He-tang, ZHU Chao-bing, LIU Jian-an. Experimental investigation of the pressure gradient of a new spiral mesh foam generator [J]. Process Safety and Environmental Protection, 2015, 94: 44-54.
  • 9PEN Wan-xing. Research on the theory and technology for dust control by foam in underground coal mines [M]. Xuzhou: China University of Mining and Technology Press, 2013: 89-96. (in Chinese).
  • 10LU Xin-xiao, WANG Dc-ming, SHEN Wei, CAO Kai. A new design of double-stage parallel adding equipment used for dust suppression in underground coal mines [J]. Arabian Journal for Science and Engineering, 2014, 39(11): 8319-8330.

引证文献2

二级引证文献10

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部