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JÓZSA, V. MALÝ, M. FÜZESI, D. RÁCZ, E. KARDOS, R. JEDELSKÝ, J.
Original Title
Schlieren analysis of non-MILD distributed combustion in a mixture temperature-controlled burner
Type
journal article in Web of Science
Language
English
Original Abstract
It was recently demonstrated that distributed combustion is accessible outside the MILD combustion regime without needing inner or outer flue gas recirculation. The Mixture-Temperature Controlled combustion concept, which made it possible, offers excellent flame stability besides ultra-low emission. This concept is investigated presently to reveal the qualitative characteristics of the cold discharging mixture jet from the burner and its ignition. The Schlieren technique with a high-speed camera is the most suitable approach for this purpose, revealing the line-of-sight density gradients. Nine cases were evaluated, utilizing natural gas and diesel fuel, various equivalence ratios, and atomizing pressures. V-shaped flames were used as a baseline for comparing distributed combustion to it via direct images and velocity field using the PIVlab Matlab application. The results confirm the previous hypothesis that distributed combustion features a cold fuel-air mixture at the burner discharge that ignites downstream. The excellent flame stability comes from the fishbone-tiled coherent structures with significant random features, resulting in no characteristic frequency related to the flame. All these results comply with the previous findings by chemiluminescence emission and acoustic signal of distributed combustion, which techniques cannot be used to investigate the flame structure, unlike Schlieren imaging.
Keywords
Turbulent; Burner; Swirl; Combustion; Schlieren; Distributed
Authors
JÓZSA, V.; MALÝ, M.; FÜZESI, D.; RÁCZ, E.; KARDOS, R.; JEDELSKÝ, J.
Released
15. 6. 2023
Publisher
Elsevier
Location
OXFORD
ISBN
0360-5442
Periodical
Energy
Year of study
273
Number
1
State
United Kingdom of Great Britain and Northern Ireland
Pages from
Pages to
12
Pages count
URL
https://www.sciencedirect.com/science/article/pii/S0360544223006242
Full text in the Digital Library
http://hdl.handle.net/11012/213602
BibTex
@article{BUT183162, author="Viktor {Józsa} and Milan {Malý} and Dániel {Füzesi} and Erika {Rácz} and Réka Anna {Kardos} and Jan {Jedelský}", title="Schlieren analysis of non-MILD distributed combustion in a mixture temperature-controlled burner", journal="Energy", year="2023", volume="273", number="1", pages="1--12", doi="10.1016/j.energy.2023.127230", issn="0360-5442", url="https://www.sciencedirect.com/science/article/pii/S0360544223006242" }