Experimental investigation on macrostructure and evolution of hydrogen-air micro-mix multi-jet flames

IF 8.1 2区 工程技术 Q1 CHEMISTRY, PHYSICAL International Journal of Hydrogen Energy Pub Date : 2024-11-28 DOI:10.1016/j.ijhydene.2024.11.297
Bowen Sa , Weiwei Shao , Zhenghao Ge , Xiaotian Bi , Zhonghao Wang , Xiang Xu
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Abstract

Considering the requirements for developing hydrogen combustion chambers and the application potential of micro-mix combustion, the flame macrostructure and evolution of hydrogen-air multi-microjet flames have been investigated to discover the relationship between flame macrostructure and thermoacoustic instability. A novel burner has been tested under different combustor liner lengths to simultaneously produce stable and unstable combustion under the same operation conditions. A compact conical flame shape without adjacent flame front interference is observed. In comparison with the combustor liner length, the flame temperature variation shows an insignificant effect on the thermoacoustic instability but triggers an oscillation mode transition from low-frequency (∼210–240Hz) to high-frequency (∼400–440Hz) under unstable combustion. Different flame evolutions are revealed for these oscillation modes. DMD analysis and LES simulation show that the high-frequency oscillation mode is mainly controlled by flame front oscillation and flame pinch-off process. However, the low-frequency oscillation mode is characterized by flame extinction on a large scale. Both equivalent ratio and velocity fluctuations contributed to flame and heat release oscillations under low and high flame temperatures. These findings help understand the mechanisms, driving hydrogen-air flame dynamics, and designing hydrogen combustors.
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氢-空气微混合多射流火焰的宏观结构与演化实验研究
考虑到氢燃烧室发展的要求和微混合燃烧的应用潜力,对氢-空气多微射流火焰的火焰宏观结构和演化进行了研究,以揭示火焰宏观结构与热声不稳定性之间的关系。对一种新型燃烧器在不同燃烧室衬套长度下,在相同工况下同时产生稳定燃烧和不稳定燃烧进行了试验。观察到一个紧凑的圆锥形火焰形状,没有相邻火焰前缘的干扰。与燃烧室衬板长度相比,火焰温度变化对热声不稳定性的影响不显著,但在不稳定燃烧下引发了从低频(~ 210-240Hz)到高频(~ 400-440Hz)的振荡模式转变。揭示了不同振荡模式下火焰的演化规律。DMD分析和LES仿真表明,高频振荡模式主要受火焰前缘振荡和火焰掐断过程控制。而低频振荡模式则以大规模的火焰熄灭为特征。在低温和高温下,等效比和速度波动都对火焰和放热振荡有贡献。这些发现有助于理解机理,驱动氢-空气火焰动力学,并设计氢燃烧器。
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来源期刊
International Journal of Hydrogen Energy
International Journal of Hydrogen Energy 工程技术-环境科学
CiteScore
13.50
自引率
25.00%
发文量
3502
审稿时长
60 days
期刊介绍: The objective of the International Journal of Hydrogen Energy is to facilitate the exchange of new ideas, technological advancements, and research findings in the field of Hydrogen Energy among scientists and engineers worldwide. This journal showcases original research, both analytical and experimental, covering various aspects of Hydrogen Energy. These include production, storage, transmission, utilization, enabling technologies, environmental impact, economic considerations, and global perspectives on hydrogen and its carriers such as NH3, CH4, alcohols, etc. The utilization aspect encompasses various methods such as thermochemical (combustion), photochemical, electrochemical (fuel cells), and nuclear conversion of hydrogen, hydrogen isotopes, and hydrogen carriers into thermal, mechanical, and electrical energies. The applications of these energies can be found in transportation (including aerospace), industrial, commercial, and residential sectors.
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