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Heating and ablation of tokamak graphite by pulsed nanosecond Nd-YAG lasers

机译:纳秒脉冲Nd-YAG激光加热和烧蚀托卡马克石墨

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摘要

The results on laser heating and ablation of graphite tiles of thermonuclear tokamaks are presented. Two pulsed Nd-YAG lasers (20 Hz repetition rate, 5 ns pulse duration and 10 kHz repetition rate, 100 ns pulse duration) were applied for ablation measurements. The ablation thresholds (1.0±0.5 J/cm~2 for 5 ns and 2.5+0.5 J/cm~2 for 100 ns laser pulses) were determined for the Tore Supra tokamak graphite tiles (backside) nonexposed to plasma. The high repetition rate Nd-YAG laser (10 kHz, 100 ns pulse duration) and the developed pyrometer system were applied for graphite heating measurements. Some unexpected features of laser heating of the graphite surface were observed. They were explained by the presence of a thin surface layer with the properties different from those of the bulk graphite. The theoretical models of laser heating and near-threshold ablation of graphite with imperfectly adhered layer were developed to interpret the experimental results.
机译:给出了激光加热和烧蚀热核托卡马克石墨砖的结果。使用两个脉冲Nd-YAG激光器(重复频率为20 Hz,脉冲持续时间为5 ns,重复频率为10 kHz,脉冲持续时间为100 ns)进行消融测量。确定未暴露于等离子体的Tore Supra托卡马克石墨砖(背面)的烧蚀阈值(5 ns为1.0±0.5 J / cm〜2和100 ns激光脉冲为2.5 + 0.5 J / cm〜2)。高重复率Nd-YAG激光器(10 kHz,100 ns脉冲持续时间)和发达的高温计系统被用于石墨加热测量。观察到了激光加热石墨​​表面的一些出乎意料的特征。它们的解释是由于存在薄的表层,其性质不同于块状石墨。建立了激光加热和不完全附着层石墨近阈烧蚀的理论模型,以解释实验结果。

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