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Three-dimensional non-equilibrium modeling of a DC multi-cathode arc plasma torch

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【作者】 张泽龙王城孙强夏维东

【Author】 Zelong ZHANG;Cheng WANG;Qiang SUN;Weidong XIA;Department of Thermal Science and Energy Engineering, University of Science and Technology of China;Anhui Advanced Technology Research Institute of Green Building;

【通讯作者】 王城;夏维东;

【机构】 Department of Thermal Science and Energy Engineering, University of Science and Technology of ChinaAnhui Advanced Technology Research Institute of Green Building

【摘要】 In this paper, a three-dimensional non-equilibrium steady arc model is used to investigate the temperature, velocity and electromagnetic field in multi-cathode arc torch, and the formation mechanism of a large-area, uniform and diffused arc plasma is analyzed. The numerical simulation results show that a large volume plasma region can be formed in the central region of the generator during discharge. During this process, the maximum electron temperature appears near the cathode and in the central convergence region, while the maximum heavy particle temperature only appears in the central convergence region. This phenomenon is consistent with the experimental arc images. Near the cathode tip, the arc column is in a contraction state. In the area slightly away from the cathode, the six arc columns begin to join together. In the plasma generator, there is a large-scale current distribution in all directions of X, Y and Z, forming a stable arc plasma with a wide range of diffusion. The calculated electron temperature distribution is in good agreement with the measured electron temperature. The results suggest that the largearea diffused arc plasma in the multi-cathode arc torch is the combined effect of current distribution, convection heat transfer and heat conduction.

【Abstract】 In this paper, a three-dimensional non-equilibrium steady arc model is used to investigate the temperature, velocity and electromagnetic field in multi-cathode arc torch, and the formation mechanism of a large-area, uniform and diffused arc plasma is analyzed. The numerical simulation results show that a large volume plasma region can be formed in the central region of the generator during discharge. During this process, the maximum electron temperature appears near the cathode and in the central convergence region, while the maximum heavy particle temperature only appears in the central convergence region. This phenomenon is consistent with the experimental arc images. Near the cathode tip, the arc column is in a contraction state. In the area slightly away from the cathode, the six arc columns begin to join together. In the plasma generator, there is a large-scale current distribution in all directions of X, Y and Z, forming a stable arc plasma with a wide range of diffusion. The calculated electron temperature distribution is in good agreement with the measured electron temperature. The results suggest that the largearea diffused arc plasma in the multi-cathode arc torch is the combined effect of current distribution, convection heat transfer and heat conduction.

【基金】 supported by National Natural Science Foundation of China (Nos. 11875256, 12005023, 11705202);Scientific Research Fund Project of Anhui Jianzhu University (No. 2020QDZ09);Anhui Provincial Natural Science Foundation (No. 1808085MA12)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2021年07期
  • 【分类号】O53
  • 【下载频次】42
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