Optical and Laser Spectroscopic Study of Microwave Plasma-assisted Combustion

Optical and Laser Spectroscopic Study of Microwave Plasma-assisted Combustion
Author: Wei Wu
Publisher:
Total Pages: 225
Release: 2016
Genre:
ISBN:

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Nonthermal plasma-assisted combustion (PAC) has been demonstrated to be a promising potential method to enhance combustion performance and reduce the pollutant emissions. To better understand the mechanism in PAC, we have conducted a series of studies on the combustion enhancement by plasma using a home-developed PAC platform which employs a nonthermal microwave argon plasma and a suit of optical diagnostic tools including optical imaging, optical emission spectroscopy, and cavity ringdown spectroscopy. A new PAC system in which a continuous atmospheric argon microwave plasma jet is employed to enhance combustion of methane/air mixtures was reported. Reactive species in PAC were characterized in a state-resolved manner including the simultaneously measurements of OH(A) and OH(X) radicals in the PAC flames. Roles of the state-resolved OH(A) and OH(X) radicals in microwave PAC of premixed methane/air mixture were explored. It was concluded that if both OH(A) and OH(X) radicals assisted the ignition and flame stabilization processes, then we may hypothesize that the role of OH(A) was more dominant in the ignition enhancement but the role of OH(X) was more dominant in the flame stabilization. The effect of fuel injection configurations was investigated in the comparative study between PAC of the premixed and nonpremixed methane/air mixtures. It was found that emissions from the CH (A-X) and C2 Swan systems only exist in the nonpremixed PAC which suggest that the reaction pathways are different between premixed and nonpremixed PAC. The PAC of premixed methane/oxygen/argon mixtures was investigated. A Ushaped dual-layer curve of fuel ignition/flame stabilization limit showing the effects of the plasma power on the fuel ignition and flame stabilization was observed and reported. A parametric study of the microwave PAC of the premixed ethylene/air mixtures was conducted. Behavior of the OH, CH, and C2 radicals and their dependence on plasma power, argon flow rate, and total ethylene/air mixture flow rate were also studied.


Optical and Laser Spectroscopic Study of Microwave Plasma-assisted Combustion
Language: en
Pages: 225
Authors: Wei Wu
Categories:
Type: BOOK - Published: 2016 - Publisher:

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Nonthermal plasma-assisted combustion (PAC) has been demonstrated to be a promising potential method to enhance combustion performance and reduce the pollutant
Microwave Plasma Assisted Ignition and Combustion Diagnostics
Language: en
Pages: 148
Authors: Che Amungwa Fuh
Categories:
Type: BOOK - Published: 2018 - Publisher:

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Plasmas when coupled to the oxidation process of various fuels have been shown to influence the process positively by improving upon flameholding, reduction in
Plasma Spectroscopy
Language: en
Pages: 204
Authors: Evgeniĭ Aleksandrovich Oks
Categories: Science
Type: BOOK - Published: 1995 - Publisher: Springer

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Plasma Spectroscopy develops the foundation of spectroscopy for plasmas containing quasi-monochromatic electric fields in the microwaves or optical range. This
Plasma Spectroscopy
Language: en
Pages: 200
Authors: Eugene Oks
Categories:
Type: BOOK - Published: 1995-05-12 - Publisher:

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A systematic development of the foundations of spectroscopy for plasmas subjected to quasi-monochromatic electric fields in the microwave or visible range. Of i
Proceedings of the 37th International MATADOR Conference
Language: en
Pages: 438
Authors: Srichand Hinduja
Categories: Technology & Engineering
Type: BOOK - Published: 2012-10-08 - Publisher: Springer Science & Business Media

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Presented here are 97 refereed papers given at the 37th MATADOR Conference held at The University of Manchester in July 2012. The MATADOR series of conferences