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Non-resonant photochemical ignition of lean methane/air mixtures by femtosecond laser filamentation
2024-08
发表期刊COMBUSTION AND FLAME (IF:5.8[JCR-2023],5.7[5-Year])
ISSN0010-2180
EISSN1556-2921
卷号266
发表状态已发表
DOI10.1016/j.combustflame.2024.113542
摘要

Laser ignition (LI) is promising for green combustion of lean-fuel mixtures with controllable ignition timing and location. It was recently discovered that despite the inferior energy deposition and low thermal temperature in femtosecond (fs) laser-induced plasma, fs laser pulses can achieve a robust ignition of lean-fuel mixture through forming a 'line' kernel by filamentation. Here, to clarify fs-LI mechanism, we investigated a dual-color (DC: 800 nm at 1.5 mJ and 400 nm at 0.43 mJ, ∼50 fs) fs-LI of a lean methane/air mixture with an equivalence ratio of φ = 0.87. An optical emission spectroscopy study was conducted to probe the N2+ and OH emissions and characterize the ignition success rate. It was demonstrated that fs-LI can be achieved at a lower minimum ignition energy (MIE) (0.7 mJ) by a single-color (SC: 800 nm at 2.0 and 2.4 mJ, ∼50 fs) scheme, indicating a strong wavelength effect on the successful ignition. A pump-probe measurement was carried out to reveal the effect of the ionization enhancement on the successful ignition. It was found that only when the two-color fs pulses are temporally overlapped, the OH yield is strongly enhanced and the MIE is decreased. By comparing the variation trend of the fluorescence intensity of OH with that of the direct ionization product N2+, we ascribed fs-LI to a non-resonant photochemical ignition mechanism, in which the enhancement in the multiphoton/tunnel ionization of the lean-fuel mixture by the high-energy 400-nm photon can increase the yields of the reactive radicals through various dissociation and chain reaction pathways, and thus result in the successful ignition at the micro-joule level. This work unravels the essential role of the non-resonant photochemical ignition mechanism in fs-LI, and provides a promising route for the ignition of lean-fuel engines by compact ultrashort-pulsed lasers in the filamentation regime. © 2024 The Combustion Institute

关键词Color Ignition Laser produced plasmas Methane Optical emission spectroscopy Photoionization Pulsed lasers Dual color Femtosecond laser ignition Fuel mixtures Ignition mechanisms Laser ignition Lean fuel Methane-air mixture Nonresonant Photochemical ignition Photochemicals
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收录类别EI ; SCI
语种英语
资助项目National Natural Science Foundation of China["62205123","62027822"] ; Nat- ural Science Foundation of Jilin Province of China[20230101010JC]
WOS研究方向Thermodynamics ; Energy & Fuels ; Engineering
WOS类目Thermodynamics ; Energy & Fuels ; Engineering, Multidisciplinary ; Engineering, Chemical ; Engineering, Mechanical
WOS记录号WOS:001252412000001
出版者Elsevier Inc.
EI入藏号20242316210784
EI主题词Femtosecond lasers
EI分类号521.1 Fuel Combustion ; 741.1 Light/Optics ; 744.1 Lasers, General ; 744.9 Laser Applications ; 802.2 Chemical Reactions ; 804.1 Organic Compounds ; 932.3 Plasma Physics ; 941.4 Optical Variables Measurements
原始文献类型Journal article (JA)
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文献类型期刊论文
条目标识符https://kms.shanghaitech.edu.cn/handle/2MSLDSTB/387362
专题物质科学与技术学院
物质科学与技术学院_特聘教授组_李儒新组
通讯作者Xu, Huailiang
作者单位
1.State Key Laboratory of Integrated Optoelectronics, College of Electronic Science and Engineering, Jilin University, Jilin, Changchun; 130012, China
2.Institute of Atomic and Molecular Physics, Jilin University, Jilin, Changchun; 130012, China
3.School of Physics & electronic Engineering, Harbin Normal University, Heilongjiang, Harbin; 150025, China
4.State Key Laboratory of High Field Laser Physics, Shanghai Institute of Optics and Fine Mechanics, CAS, Shanghai; 201800, China
5.School of Physical Science and Technology, Shanghai Tech University, Shanghai; 201210, China
推荐引用方式
GB/T 7714
Zhang, Wei,Zang, Hongwei,Wang, Shuo,et al. Non-resonant photochemical ignition of lean methane/air mixtures by femtosecond laser filamentation[J]. COMBUSTION AND FLAME,2024,266.
APA Zhang, Wei.,Zang, Hongwei.,Wang, Shuo.,Chen, Junyan.,Li, Helong.,...&Li, Ruxin.(2024).Non-resonant photochemical ignition of lean methane/air mixtures by femtosecond laser filamentation.COMBUSTION AND FLAME,266.
MLA Zhang, Wei,et al."Non-resonant photochemical ignition of lean methane/air mixtures by femtosecond laser filamentation".COMBUSTION AND FLAME 266(2024).
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