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姚聪林等:电弧炉内长电弧等离子体的数值模拟 67 transfer and fluid flow in activating TIG welding by numerical 值模拟.高压电器,2005,41(4):241) modeling.Appl Therm Eng,2017,113:27 [27]Wang F H.Study of Modeling the Electric Arc Furnace and Its [21]Hsu K C,Pfender E.Two-temperature modeling of the free- Application[Dissertation].Shanghai:Shanghai Jiaotong University, burning,high-intensity arc.J App/Plys,1983,54(8):4359 2006 [22]Capitelli M.Colonna G.Gorse C.et al.Transport properties of (王丰华.电弧炉建模研究及其应用学位论文]上海:上海交通 high temperature air in local thermodynamic equilibrium.Eur Phys 大学,2006) JD,2000,11(2):279 [28]Bowman B.Measurements of plasma velocity distributions in free- [23]Zhu Y B,Song D L.Zeng Z S,et al.DC Electric Arc Furnace burning DC arcs up to 2160 A.J Phys D App/Plrys,1972,5(8): Steelmaking Technology.Beijing:Metallurgical Industry Press, 1422 1997 [29]Qi J W.Hu M.Shao Z R,et al.Numerical simulation of three- (朱应波,宋东亮,曾昭生,等.直流电弧炉炼钢技术,北京:治金 dimensional long arc magneto-hydrodynamic.Ind Heat,2018, 工业出版社,1997) 47(6):38 [24]Wang F,Jin Z,Zhu Z.Numerical study of dc arc plasma and (齐景伟,胡明,邵哲如,等.三维长电弧磁流体动力学数值模拟 molten bath in dc electric arc furnace.Ironmaking Steelmaking. 工业加热,2018.47(6):38) 2006,33(1):39 [30]Choo R T C,Szekely J,Westhoff R C.Modeling of high-current [25]Morris J C,Bach G R,Krey R U,et al.Continuum radiated power arcs with emphasis on free surface phenomena in the weld pool. for high-temperature air and its components./44J,1966,4(7): Weld J,1990,69(9):346 1223 [31]Tong Y B,Liu Z,Luo Y Z,et al.High impedance EAF of long arc [26]Wang F H,Jin Z J,Zhu Z S.Numerical simulation of plasma in operation.Metall Equip,2014(6):20 DC electric arc fumace.High Vol Apparatus,2005,41(4):241 (全永博,刘征,罗玉镯,等.采用长弧操作的高阻抗电弧炉.冶 (王丰华,金之俭,朱子述.直流电弧炉电弧等离子体射流的数 金设备,2014(6片:20)transfer  and  fluid  flow  in  activating  TIG  welding  by  numerical modeling. Appl Therm Eng, 2017, 113: 27 Hsu  K  C,  Pfender  E.  Two-temperature  modeling  of  the  free￾burning, high-intensity arc. J Appl Phys, 1983, 54(8): 4359 [21] Capitelli  M,  Colonna  G,  Gorse  C,  et  al.  Transport  properties  of high temperature air in local thermodynamic equilibrium. Eur Phys J D, 2000, 11(2): 279 [22] Zhu  Y  B,  Song  D  L,  Zeng  Z  S,  et  al. DC Electric Arc Furnace Steelmaking Technology.  Beijing:  Metallurgical  Industry  Press, 1997 (朱应波, 宋东亮, 曾昭生, 等. 直流电弧炉炼钢技术. 北京: 冶金 工业出版社, 1997) [23] Wang  F,  Jin  Z,  Zhu  Z.  Numerical  study  of  dc  arc  plasma  and molten  bath  in  dc  electric  arc  furnace. Ironmaking Steelmaking, 2006, 33(1): 39 [24] Morris J C, Bach G R, Krey R U, et al. Continuum radiated power for high-temperature air and its components. AIAA J, 1966, 4(7): 1223 [25] Wang F H, Jin Z J, Zhu Z S. Numerical simulation of plasma in DC electric arc furnace. High Vol Apparatus, 2005, 41(4): 241 (王丰华, 金之俭, 朱子述. 直流电弧炉电弧等离子体射流的数 [26] 值模拟. 高压电器, 2005, 41(4):241) Wang  F  H. Study of Modeling the Electric Arc Furnace and Its Application[Dissertation]. Shanghai: Shanghai Jiaotong University, 2006 (王丰华. 电弧炉建模研究及其应用[学位论文]. 上海: 上海交通 大学, 2006) [27] Bowman B. Measurements of plasma velocity distributions in free￾burning DC arcs up to 2160 A. J Phys D Appl Phys, 1972, 5(8): 1422 [28] Qi  J  W,  Hu  M,  Shao  Z  R,  et  al.  Numerical  simulation  of  three￾dimensional  long  arc  magneto-hydrodynamic. Ind Heat,  2018, 47(6): 38 (齐景伟, 胡明, 邵哲如, 等. 三维长电弧磁流体动力学数值模拟. 工业加热, 2018, 47(6):38) [29] Choo R T C, Szekely J, Westhoff R C. Modeling of high-current arcs  with  emphasis  on  free  surface  phenomena  in  the  weld  pool. Weld J, 1990, 69(9): 346 [30] Tong Y B, Liu Z, Luo Y Z, et al. High impedance EAF of long arc operation. Metall Equip, 2014(6): 20 (仝永博, 刘征, 罗玉镯, 等. 采用长弧操作的高阻抗电弧炉. 冶 金设备, 2014(6):20) [31] 姚聪林等: 电弧炉内长电弧等离子体的数值模拟 · 67 ·
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