燃烧
等离子炬
火炬
核工程
材料科学
氨
燃烧室
等离子体
感应耦合等离子体
燃烧室
分析化学(期刊)
化学
环境化学
物理
复合材料
有机化学
量子力学
焊接
工程类
作者
Igor B. Matveev,Serhiy Serbin
标识
DOI:10.1109/tps.2023.3343389
摘要
The article considers the effect of low-temperature plasma on stability and completeness of ammonia combustion in air using 3-D modeling methods. The subject for modeling is a real 1-MW thermal power plasma chemical reactor, which uses industrial inductively coupled plasma torch, also named radio frequency (RF) torch, as a flame initiator and sustainer. The influence of the plasma-assisted combustion chamber parameters on the distribution of temperature and concentration of the chemically reactive components in the volume of a fuel-burning device is reported. Calculations of the working process in the combustion chamber were carried out within the range of the air excess coefficient from 1.41 to 2.03 at a pressure of 0.3 MPa. The results could be of interest to the researchers and engineers considering ammonia as a fuel in high power combustion and gasification devices.
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