https://elibrary.ru/item.asp?id=44369782&pf=1

Qi Chen, Jintao Sun, Jianyu Liu, Baoming Zhao
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引用次数: 0

摘要

等离子体辅助点火与燃烧技术在燃气轮机、超燃冲压发动机和内燃机等领域得到了广泛的应用,在缩短点火延迟时间、提高燃烧能效和降低排放等方面具有广阔的应用前景。非平衡等离子体可以将气体分子激发到更高的能态,直接解离或电离分子,从而有可能在可燃混合物的停留时间和位置产生反应物质,从而有效地加速整个热解、氧化和着火过程。之前的研究已经通过直流、交流、微波、射频和脉冲纳秒放电(NSD)证明了等离子体辅助燃烧的有效性。在不同类型的等离子体中,由于等离子体与燃烧之间复杂的相互作用,详细的等离子体燃烧化学尚不清楚。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
https://elibrary.ru/item.asp?id=44369782&pf=1
Plasma-assisted ignition and combustion, widely applied in gas turbines, scramjets, and internal combustion engines, has been considered as a promising technique in shortening ignition delay time, improving combustion energy efficiency, and reducing emission. Nonequilibrium plasma can excite the gas molecules to higher energy states, directly dissociate or ionize the molecules and, thereby, has the potential to produce reactive species at residence time and location in a combustible mixture and then to efficiently accelerate the overall pyrolysis, oxidation, and ignition. Previous studies have demonstrated the effectiveness of plasma-assisted combustion by using direct current, alternating currant, microwave, radio frequency, and pulsed nanosecond discharge (NSD). Due to the complicated interaction between plasma and combustion in different types of plasma, detailed plasma-combustion chemistry is still not well understood.
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