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Spectroscopic diagnostics and numerical simulation of HID lamp plasma (III) - numerical simulation of a metal-halide lamp - II: method of simulation and results

机译:HID灯等离子体的光谱诊断和数值模拟(III)-金属卤化物灯的数值模拟-II:模拟方法和结果

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摘要

Numerical simulation of a vertically-held metal-halide lamp (Hg/Na/Sc system) is presented. The lamp was driven by an ac current of 60 Hz. The model took convection and diffusion of various species into account. A method for rapid calculation of optically-thick radiation power was developed. Density of scandium ions and sodium ions has a minimum on the central axis due to radial ambipolar diffusion. Density of metallic atoms and ions and metal iodine molecules decreases with increasing axial distance from the bottom of the tube. This tendency was explained by convection and diffusion. The density of scandium ions depends on the direction of the current; the density was greater at upward current than at downward current.
机译:提出了一种立式金属卤化物灯(Hg / Na / Sc系统)的数值模拟。灯由60 Hz的交流电驱动。该模型考虑了各种物种的对流和扩散。开发了一种快速计算光学厚度辐射功率的方法。由于径向双极扩散,of离子和钠离子的密度在中心轴上最小。金属原子和离子以及金属碘分子的密度随着与管底部的轴向距离的增加而降低。对流和扩散解释了这种趋势。 of离子的密度取决于电流的方向。密度在向上电流大于在向下电流。

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