LAPSE:2023.12749
Published Article

LAPSE:2023.12749
Three-Dimensional Direct Numerical Simulation of Near-Field Ozone-Enhanced Lean Premixed Syngas Turbulent Jet Flame
February 28, 2023
Abstract
Due to its enhancement in the flame speed, ozone added in lean premixed syngas turbulent jet flame was investigated by the three-dimensional direct numerical simulation method in the near field of the flame. In the present study, numerical simulations were conducted in the lean premixed syngas turbulent jet flame configuration to explore the effects of ozone addition on freely-propagating turbulent flames. It was seen that turbulence began to significantly affect the flame surface to produce wrinkles in lean premixed gas flame with ozone added after 4D; ozone started to affect the composition field and temperature field after 8D; it accelerated the generation of intermediate products, OH and O radicals; and it will promote the production of CO2 in the near field range. Ozone will increase the flame surface area of the lean premixed syngas flame during the ignition period and can promote the ignition process and make the combustion occur earlier. The flame surface of the case with ozone added is more easily stretched by turbulence, and ozone can improve the stability of combustion. Ozone does not affect the effective radius of the flame curvature but will broaden the distribution of the curvature term because of the enhancement effect on the displacement speed of the flame surface.
Due to its enhancement in the flame speed, ozone added in lean premixed syngas turbulent jet flame was investigated by the three-dimensional direct numerical simulation method in the near field of the flame. In the present study, numerical simulations were conducted in the lean premixed syngas turbulent jet flame configuration to explore the effects of ozone addition on freely-propagating turbulent flames. It was seen that turbulence began to significantly affect the flame surface to produce wrinkles in lean premixed gas flame with ozone added after 4D; ozone started to affect the composition field and temperature field after 8D; it accelerated the generation of intermediate products, OH and O radicals; and it will promote the production of CO2 in the near field range. Ozone will increase the flame surface area of the lean premixed syngas flame during the ignition period and can promote the ignition process and make the combustion occur earlier. The flame surface of the case with ozone added is more easily stretched by turbulence, and ozone can improve the stability of combustion. Ozone does not affect the effective radius of the flame curvature but will broaden the distribution of the curvature term because of the enhancement effect on the displacement speed of the flame surface.
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Keywords
direct numerical simulation, enhancement, lean, ozone, premixed, Syngas, turbulence
Subject
Suggested Citation
Xu C, Lin J, Wang Z, Wan K, Sun S, Zhou Z. Three-Dimensional Direct Numerical Simulation of Near-Field Ozone-Enhanced Lean Premixed Syngas Turbulent Jet Flame. (2023). LAPSE:2023.12749
Author Affiliations
Xu C: College of Energy Engineering, Zhejiang University, Hangzhou 310027, China; Zhejiang Energy R&D Institute Co., Ltd., Hangzhou 311121, China [ORCID]
Lin J: College of Energy Engineering, Zhejiang University, Hangzhou 310027, China; Zhejiang Energy R&D Institute Co., Ltd., Hangzhou 311121, China
Wang Z: College of Energy Engineering, Zhejiang University, Hangzhou 310027, China [ORCID]
Wan K: Aircraft and Propulsion Laboratory, Ningbo Institute of Technology, Beihang University, Ningbo 100190, China
Sun S: Zhejiang Energy R&D Institute Co., Ltd., Hangzhou 311121, China
Zhou Z: College of Energy Engineering, Zhejiang University, Hangzhou 310027, China
Lin J: College of Energy Engineering, Zhejiang University, Hangzhou 310027, China; Zhejiang Energy R&D Institute Co., Ltd., Hangzhou 311121, China
Wang Z: College of Energy Engineering, Zhejiang University, Hangzhou 310027, China [ORCID]
Wan K: Aircraft and Propulsion Laboratory, Ningbo Institute of Technology, Beihang University, Ningbo 100190, China
Sun S: Zhejiang Energy R&D Institute Co., Ltd., Hangzhou 311121, China
Zhou Z: College of Energy Engineering, Zhejiang University, Hangzhou 310027, China
Journal Name
Energies
Volume
15
Issue
11
First Page
3945
Year
2022
Publication Date
2022-05-26
ISSN
1996-1073
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PII: en15113945, Publication Type: Journal Article
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LAPSE:2023.12749
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https://doi.org/10.3390/en15113945
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Feb 28, 2023
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