The impact of molecular radiation processes in water plasma on performance of water-vortex and hybridstabilized electric arcs

J. Jeništa, M. Bartlová, V. Aubrecht
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引用次数: 1

Abstract

Numerical investigation of radiation properties in the worldwide unique type of thermal plasma generator with water vortex stabilization (Gerdien arc) and combined stabilization of arc by argon (Ar) flow and water vortex (the so called hybrid arc) has been carried out. A twodimensional axisymmetric numerical model describes the region between the inlet and outlet nozzles in the arc discharge chamber. It is assumed that plasma flow is steady, laminar, compressible and in the state of local thermodynamic equilibrium. The governing equations are solved numerically by the Finite Volume Method. Here we study the contribution of water molecular species and of ∼ 3 500 newly-included Ar lines on radiation transport within the discharge region of water and hybrid arcs. Radiation loss from the arc is calculated by the partial characteristics method for atmospheric pressure water and argon-water discharges. In contrast to our previously published results, band spectra of H2, O2, OH molecules and re-calculated Ar line spectrum have been included in the partial characteristics. Results carried out for 150–600 A and for Ar mass flow rates of 7.5–27.5 slm proved that reabsorption in water plasma increases of about 3.5% for all currents but decreases remarkably in the hybrid plasma. For a given current and increasing mass flow rate of Ar reabsorption decreases. Comparison between present calculation and available experiments shows good agreement.
水等离子体中分子辐射过程对水涡和混合稳定电弧性能的影响
对具有水涡稳定化(Gerdien弧)和氩流与水涡复合稳定化(混合型弧)的热等离子体发生器的辐射特性进行了数值研究。用二维轴对称数值模型描述了电弧放电室进出口喷嘴之间的区域。假设等离子体流动是稳定的、层流的、可压缩的,处于局部热力学平衡状态。采用有限体积法对控制方程进行了数值求解。本文研究了水分子种类和新加入的约3 500个氩谱线对水和混合电弧放电区辐射输运的贡献。用部分特征法计算了常压水和氩水排放电弧的辐射损失。与我们之前发表的结果相反,H2, O2, OH分子的波段光谱和重新计算的Ar线谱被包含在部分特征中。结果表明,在150 ~ 600 A和7.5 ~ 27.5 slm的氩质量流量下,水等离子体的重吸收在所有电流下都增加了约3.5%,而在混合等离子体中则显著减少。对于给定的电流和增加的质量流量,氩的重吸收率降低。计算结果与现有实验结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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