首页> 外文期刊>IEEE Transactions on Plasma Science >3-D Flow Modeling of a Three-Phase AC Plasma Torch Working With Air Using a Stationary Source Domain With Gas Radiation
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3-D Flow Modeling of a Three-Phase AC Plasma Torch Working With Air Using a Stationary Source Domain With Gas Radiation

机译:使用带有气体辐射的固定源域,与空气一起工作的三相交流等离子炬的3-D流动建模

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This computational fluid dynamics work is dedicated to the study of heat and mass transfer in a new 100-kW three-phase ac/50 Hz plasma torch operating with air. The transient behavior of the arc is simplified using time-averaged heat and momentum source inputs in a stationary source volume whose form was chosen according to the results from a separate magnetohydrodynamic calculation. A parametric study of source volume and momentum intensity is conducted and shows a little influence on the overall temperature and velocity fields. Radiation from gas and walls is taken into account using the discrete ordinate model. Air radiation data consider both atomic and molecular contributions in the temperature range between 300 and 30 000 K and for the wavelengths from 0.209 to the far infrared. The results show a huge impact of radiation on wall temperature and heat losses. Two different methods, Planck and Rosseland, are used for the calculation of mean absorption coefficients. Although Planck’s average is recommended in this case, the absolute temperature difference between both averages is below 13%. Finally, this paper allows checking that the temperature of different components of plasma torch remains below the physical limits of the selected materials.
机译:这项计算流体动力学工作致力于研究新型的100 kW三相ac / 50 Hz三相空气等离子体炬中的传热和传质。电弧的瞬态行为通过使用固定源体积中的时间平均热量和动量源输入得以简化,其输入形式是根据单独的磁流体动力学计算的结果选择的。进行了源体积和动量强度的参数研究,显示对整体温度和速度场的影响很小。使用离散纵坐标模型考虑了气体和墙壁的辐射。空气辐射数据考虑了在300到30 000 K的温度范围内以及从0.209到远红外波长的原子和分子贡献。结果表明辐射对壁温和热量损失有巨大影响。普朗克和Rosseland这两种不同的方法用于计算平均吸收系数。尽管在这种情况下建议使用普朗克的平均值,但两个平均值之间的绝对温差低于13%。最后,本文允许检查等离子炬不同组件的温度是否保持在所选材料的物理极限之下。

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