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使用钽靶激光烧蚀点火预混甲烷和富氧空气混合物。

Laser ablation ignition of premixed methane and oxygen-enriched air mixtures using a tantalum target.

出版信息

Opt Lett. 2014 Jan 1;39(1):139-41. doi: 10.1364/OL.39.000139.

Abstract

We report the laser ablation ignition of premixed methane and oxygen-enriched air mixtures using a tantalum target. The minimum laser pulse energy (MPE) of the ablation ignition was obtained as 2-4 mJ, which was reduced by one order of magnitude compared with that of the direct laser-induced gas breakdown ignition. The ignition time of the ablation ignition was investigated for the first time, to our best knowledge, by measuring the emission signal profiles due to the successfully ignited flames, and an ignition time as short as ~50 μs was obtained. The reduction in MPE will promote the miniaturization and, thus, the practical applications of laser ignition systems.

摘要

我们报告了使用钽靶实现预混甲烷和富氧空气混合物的激光烧蚀点火。烧蚀点火的最小激光脉冲能量 (MPE) 为 2-4mJ,与直接激光诱导气体击穿点火相比,降低了一个数量级。据我们所知,首次通过测量由于成功点燃的火焰而产生的发射信号轮廓来研究烧蚀点火的点火时间,获得了短至约 50μs 的点火时间。MPE 的降低将促进激光点火系统的小型化,从而推动其实用化。

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