Computational Investigation of Non-Premixed Hydrogen-Air Laminar Flames
Loading...
Date
2023
Authors
Korucu, Ayşe
Journal Title
Journal ISSN
Volume Title
Publisher
Elsevier
Open Access Color
Green Open Access
No
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
Laminar diffusion hydrogen/air flames are numerically investigated. Detailed and global mechanisms are compared. NO formation is modelled by full nitrogen chemistry and the extended Zeldovich mechanism. A satisfactory agreement between the present predictions and the experiments of other authors is observed. Significance of different ingredients of mathematical modelling is analyzed. Minor roles of thermal diffusion and radiation, but a significant role of buoyancy is observed. It is observed that the full and quasi multi-component diffusion deliver the same results, whereas assuming Le = 1 to a remarkable difference. NO emissions logarithmically increase with increasing residence time. NO is the dominating nitrogen oxide. Its share increases with residence time, whereby NO2 and N2O show a reverse trend. It is observed that the NNH route plays a remarkable role in NO formation, where the share of the Zeldovich mechanism increases with residence time from about 20% to 85%, within the considered range. © 2022 Hydrogen Energy Publications LLC
Description
Keywords
Hydrogen combustion, Laminar flames, Nitrogen oxide formation, Non-premixed combustion, Reaction mechanisms, Nitrogen oxides, ddc:620, Stickstoffoxide, Laminar flames, Reaction mechanisms, Non-premixed combustion, 620, Hydrogen combustion, Reaktionsmechanismus, Laminare Strömung, Wasserstoff, Nitrogen oxide formation
Fields of Science
0211 other engineering and technologies, 02 engineering and technology, 0202 electrical engineering, electronic engineering, information engineering
Citation
WoS Q
Q1
Scopus Q
Q1

OpenCitations Citation Count
7
Source
International Journal of Hydrogen Energy
Volume
48
Issue
Start Page
14492
End Page
14510
PlumX Metrics
Citations
Scopus : 11
Captures
Mendeley Readers : 15
SCOPUS™ Citations
11
checked on Apr 27, 2026
Web of Science™ Citations
12
checked on Apr 27, 2026
Page Views
347
checked on Apr 27, 2026
Downloads
5
checked on Apr 27, 2026
Google Scholar™



