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PMID: 37165078 Published · epublish English Journal Article

Electric fields in a counterflow nonpremixed flame: measurement and simulation.

Scientific reports ·Vol. 13 ·No. 1 ·2023-05-10 ·页码 7622

Park J, Son J, Butterworth TD, Cha MS

Abstract

In electric field modified flames, the electric body force on fluid elements can play a role in modifying the flow field, affecting flame characteristics by this modified flow motion. Numerical studies have developed ion kinetic mechanisms and appropriate transport models for charged species, validating them with a voltage-current trend in 1D premixed flames. Recent experimental approaches have measured the electric field by adopting the Electric Field Induced Second Harmonic generation (EFISH) technique. However, the quantification has turned out very challenging due to the inherent distortion in the EFISH signal, as well as inhomogeneous temperature and concentration fields in the combustion field. Here, we propose measurement and calibration schemes to quantify the EFISH signal in a laminar counterflow nonpremixed flame and present comparison with numerical results using an in-house multi-physics CFD (Computational Fluid Dynamics) code. Overall, the quantified electric fields agreed well with those from numerical simulation, specifically capturing null electric fields near the flame in the sub-saturated regime due to the electric field screening effect. In the saturated regime, notable discrepancy was found in a fuel stream when electrons moved through it: experiment indicated a significant number of negative ions in the fuel stream, whereas numerical results predicted negligible negative ions, due to the implemented ion-mechanism. This suggested that the experimentally obtained electric fields may serve as validation data for modeling studies to improve transport models and ion-mechanism. In-situ measurement of charged species in the presence of external electric fields should be a future work.

作者与单位
共 4 位作者,点击展开单位 / ORCID
Park Jin
Physical Science and Engineering Division (PSE), CCRC, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955, Saudi Arabia.
Son Jinwoo
Physical Science and Engineering Division (PSE), CCRC, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955, Saudi Arabia.
Butterworth Thomas D
Brightsite Plasmalab, Circular Chemical Engineering, Maastricht University, Brightlands Chemelot Campus, Urmonderbaan 22, Geleen, 6167 RD, The Netherlands.
Cha Min Suk
Physical Science and Engineering Division (PSE), CCRC, King Abdullah University of Science and Technology (KAUST), Thuwal, 23955, Saudi Arabia. [email protected].
Article Info
Journal
Scientific reports
Abbr.
Sci Rep
ISSN
2045-2322
Corresponding email
Published
2023-05-10
电子出版
2023-00-10
页码
7622
Language
English
Country/Region
England
NLM ID
101563288
基金资助
King Abdullah University of Science and Technology · BAS/1/1384-01-01
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