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Numerical Simulation of Flow and Temperature Distribution in a Transferred Argon Arc Plasma Enclosed in a Chamber

机译:密闭室中转移氩弧等离子体中流动和温度分布的数值模拟

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References(24) Cited-By(3) A mathematical model was developed for predicting the flow characteristics and temperature distribution of a transferred arc plasma enclosed in a cylindrical chamber. The simulation incorporated the k–ε turbulence model to account for turbulent flow of the introduced gas. The model was adopted to a supplied current of 200 A, an arc length of 0.01 m, and Argon gas inflow rates of 3.33 × 10–4 and 6.67 × 10–4 m3/s. Goodagreement of the calculated isotherms in the arc with measured temperatures available from the literature was obtained, thus validating the model. The gas introduced through the nozzle was observed to pass along the edge of the arc region and creep close to the wall, result in a recirculating flow that covers most of the chamber. A high temperature region concentrated only at the vicinity of the electrodes, while substantially lower temperatures were predicted in most sections of the chamber away from the arc.
机译:参考文献(24)引用了By(3),建立了一个数学模型,用于预测封闭在圆柱室内的转移电弧等离子体的流动特性和温度分布。该模拟结合了k–ε湍流模型来说明引入气体的湍流。该模型采用的电流为200 A,电弧长度为0.01 m,氩气流入速率为3.33×10–4和6.67×10–4 m3 / s。获得了电弧中计算的等温线与文献提供的测量温度的良好一致性,从而验证了模型。观察到通过喷嘴引入的气体沿着弧形区域的边缘通过并在靠近壁的方向蠕变,从而导致覆盖整个腔室的再循环气流。高温区域仅集中在电极附近,而在远离电弧的腔室的大部分区域中,预测的温度要低得多。

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