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Modelling Study on the Plasma Flow and Heat Transfer in a Laminar Arc Plasma Torch Operating at Atmospheric and Reduced Pressure 被引量:1

Modelling Study on the Plasma Flow and Heat Transfer in a Laminar Arc Plasma Torch Operating at Atmospheric and Reduced Pressure
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摘要 A modelling study is performed to investigate the characteristics of both plasma flow and heat transfer of a laminar non-transferred arc argon plasma torch operated at atmospheric and reduced pressure. It is found that the calculated flow fields and temperature distributions are quite similar for both cases at a chamber pressure of 1.0 atm and 0.1 atm. A fully developed flow regime could be achieved in the arc constrictor-tube between the cathode and the anode of the plasma torch at 1.0 atm for all the flow rates covered in this study. However the flow field could not reach the fully developed regime at 0.1 atm with a higher flow rate. The arc-root is always attached to the torch anode surface near the upstream end of the anode, i.e. the abruptly expanded part of the torch channel, which is in consistence with experimental observation. The surrounding gas would be entrained from the torch exit into the torch interior due to a comparatively large inner diameter of the anode channel compared to that of the arc constrictor-tube. A modelling study is performed to investigate the characteristics of both plasma flow and heat transfer of a laminar non-transferred arc argon plasma torch operated at atmospheric and reduced pressure. It is found that the calculated flow fields and temperature distributions are quite similar for both cases at a chamber pressure of 1.0 atm and 0.1 atm. A fully developed flow regime could be achieved in the arc constrictor-tube between the cathode and the anode of the plasma torch at 1.0 atm for all the flow rates covered in this study. However the flow field could not reach the fully developed regime at 0.1 atm with a higher flow rate. The arc-root is always attached to the torch anode surface near the upstream end of the anode, i.e. the abruptly expanded part of the torch channel, which is in consistence with experimental observation. The surrounding gas would be entrained from the torch exit into the torch interior due to a comparatively large inner diameter of the anode channel compared to that of the arc constrictor-tube.
出处 《Plasma Science and Technology》 SCIE EI CAS CSCD 2009年第2期163-170,共8页 等离子体科学和技术(英文版)
基金 supported by National Natural Science Foundation of China (Nos. 10575127, 10772016) the Doctoral Research Fund of Higher Education of China (No. 20070006022)
关键词 non-transferred arc torch plasma flow and heat transfer numerical modelling non-transferred arc torch, plasma flow and heat transfer, numerical modelling
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  • 1Pfender E. 1999, Plasma Chem. Plasma Process., 19: 1
  • 2Fauchais P, Vardelle A. 2000, Plasma Phys. Control. Fusion, 42:B365
  • 3Lu Fanxiu, Tang Weizhong, Huang Tianbin, et al. 2001, Diamond and Related Materials, i0:1551
  • 4Pan Wenxia, Li Gang, Meng Xian, et al. 2005, Pure Appl. Chem., 77:373
  • 5Yoshida T. 2006, Pure and Applied Chemistry, 78: 1093
  • 6Heberlein J, Murphy A. 2008, J. Phys. D: Appl. Phys., 41:053001
  • 7Scott D A, Kovitia P, Haddad G N. 1989, J. Appl. Phys., 66:5232
  • 8Westhoff R, Szekely J. 1991, J. Appl. Phys., 70:3455
  • 9Murphy A B, Kovitia P. 1993, J. Appl. Phys., 73:4759
  • 10Bauchire J M, Gonzalez J J, Gleizes A. 1997, Plasma Chem. Plasma Process., 17:409

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