Please use this identifier to cite or link to this item: https://hdl.handle.net/2440/59732
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Type: Journal article
Title: Effect of a uniform electric field on soot in laminar premixed ethylene/air flames
Author: Wang, Y.
Nathan, G.
Alwahabi, Z.
King, K.
Ho, J.
Yao, Q.
Citation: Combustion and Flame, 2010; 157(7):1308-1315
Publisher: Elsevier Science Inc
Issue Date: 2010
ISSN: 0010-2180
Statement of
Responsibility: 
Y. Wang, G.J. Nathan, Z.T. Alwahabi, K.D. King, K. Ho and Q. Yao
Abstract: The effect of a nominally uniform electric field on the initially uniform distribution of soot has been assessed for laminar premixed ethylene/air flames from a McKenna burner. An electrophoretic influence on charged soot particles was measured through changes to the deposition rate of soot on the McKenna plug, using laser extinction (LE). Soot volume fraction was measured in situ using laser-induced incandescence (LII). Particle size and morphologies were assessed through ex situ transmission electron microscopy (TEM) using thermophoretic sampling particle diagnostics (TSPD). The results show that the majority of these soot particles are positively charged. The presence of a negatively charged plug was found to decrease the particle residence times in the flame and to influence the formation and oxidation progress. A positively charged plug has the opposite effect. The effect on soot volume fraction, particles size and morphology with electric field strength is also reported. Flame stability was also found to be affected by the presence of the electric field, with the balance of the electrophoretic force and drag force controlling the transition to unstable flame flicker. The presence of charged species generated by the flame was found to reduce the dielectric field strength to one seventh that of air. © 2010 The Combustion Institute.
Keywords: Soot particles
Electric field
McKenna burner
LII
Thermophoretic sampling
Rights: Copyright © 2010 The Combustion Institute. Published by Elsevier Inc.
DOI: 10.1016/j.combustflame.2010.03.001
Published version: http://dx.doi.org/10.1016/j.combustflame.2010.03.001
Appears in Collections:Aurora harvest
Chemical Engineering publications
Environment Institute Leaders publications
Mechanical Engineering publications

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