Optical and numerical study on the effect of wall impingement on passive jet ignition characteristics of methane/air mixture

被引:3
|
作者
Zhang, Yixiao [1 ]
Ma, Xiao [1 ]
Mao, Jianshu [1 ]
Fang, Yuwen [1 ]
Jiang, Changzhao [2 ]
Wang, Zhi [1 ]
Shuai, Shijin [1 ]
机构
[1] Tsinghua Univ, State Key Lab Intelligent Green Vehicle & Mobil, Beijing 100084, Peoples R China
[2] Brunel Univ London, Mech & Aerosp Engn Dept, Uxbridge UB8 3PH, England
基金
中国国家自然科学基金;
关键词
Pre-chamber jet ignition; Wall impingement; Ignition zone; Stagnation effect; HEAT-TRANSFER; COMBUSTION; HYDROGEN; H-2/AIR; GAS;
D O I
10.1016/j.fuel.2024.131467
中图分类号
TE [石油、天然气工业]; TK [能源与动力工程];
学科分类号
0807 ; 0820 ;
摘要
Pre-chamber turbulent jet ignition is a promising high-efficiency combustion technique to achieve stable leanburn operation for spark-ignition engines. Wall impingement by a high momentum turbulent jet could exert a critical influence on jet ignition behavior. In this work, the passive jet ignition characteristics of premixed methane/air mixture under wall impinging condition was investigated based on optical experiments in a constant volume chamber and numerical simulations. Two ignition modes were found for flat wall impinging cases across a range of non-dimensional impinging distances (H/D) from 5.7 to 20. In mode 1, ignition initiates from near wall region. Under lean conditions of lambda = 1.3, compared with that in the free jet case, the ignition delay time characterized by a 5 % mass fraction burned (MFB-05), decreases by 3.3 ms at H = 30 mm and increases by up to 6.6 ms at H = 20 mm. In mode 2, ignition initiates from the jet root. The ignition delay times are shorter for all impinging distances (H = 20, 30, 40 mm), with MFB-05 decreasing by up to 3.4 ms. Simulations reveal that when the wall is located in the jet developing zone with H/D below 7, wall impinging deteriorates the ignition, which is attributed by higher turbulent kinetic energy (TKE) and lower Damko<spacing diaeresis>hler (Da) number near the stagnation zone, resulting in extended ignition delay. Conversely, as H/D increases, ignition is promoted by the stagnation effect with a shorter ignition delay. Additionally, the effect of wall shapes was analyzed. Using sharp-tip V-shaped wall, the stagnation region with high TKE is minimized. A blunt-tip V-shaped wall shows enhanced impinging but no obvious increase of Da number at stagnation point. Using M-shaped wall, the ignition mode with a "lift-off" flame was found. Besides, ignition is more favorable in the secondary jet zone with active radicals and higher Da number.
引用
收藏
页数:19
相关论文
共 50 条
  • [41] IGNITION IN CONDITIONS WHERE A JET OF FUEL-AIR MIXTURE INTERACTS WITH THE WALL OF A DIESEL COMBUSTION-CHAMBER
    BAEV, VK
    BUZUKOV, AA
    TIMOSHENKO, BP
    [J]. COMBUSTION EXPLOSION AND SHOCK WAVES, 1995, 31 (01) : 6 - 13
  • [42] Experimental Study on Transient Ignition Characteristics of Acoustic Excited Methane Jet Diffusion Flames
    Zhu, Peng
    Wang, Qian
    Pan, Deng
    Zhu, Tong
    Ji, Chenzhen
    [J]. APPLIED SCIENCES-BASEL, 2022, 12 (19):
  • [43] 2-D numerical study of effect of Reynolds number on double -diffusive jet interaction in a passive mixture
    Khan, Saleem A.
    Abu Shahzer, M.
    Hasan, Nadeem
    [J]. MATERIALS TODAY-PROCEEDINGS, 2020, 25 : 848 - 856
  • [44] Study on the laminar flame characteristics of methane-air-diluent mixture
    Yang, Xiaojun
    Jiang, Deming
    [J]. Neiranji Xuebao/Transactions of CSICE (Chinese Society for Internal Combustion Engines), 2000, 18 (04): : 353 - 358
  • [45] A NUMERICAL DETERMINING OF THE CRITICAL CONDITIONS FOR SPARK IGNITION AND YIELDING OF A STABLE COMBUSTION OF A LEAN METHANE-AIR MIXTURE
    Moiseeva, K. M.
    Krainov, A. Yu
    [J]. VESTNIK TOMSKOGO GOSUDARSTVENNOGO UNIVERSITETA-MATEMATIKA I MEKHANIKA-TOMSK STATE UNIVERSITY JOURNAL OF MATHEMATICS AND MECHANICS, 2018, (56): : 79 - 87
  • [46] A numerical study of hetero-homogeneous ignition of hydrogen/air mixture over platinum
    Cheng, Ming
    Zheng, Xin
    Yuan, Hongyong
    Luo, Yang
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2024, 56 : 432 - 440
  • [47] Experimental and numerical study on spontaneous ignition of hydrogen and hydrogen-methane jets in air
    Rudy, W.
    Dabkowski, A.
    Teodorczyk, A.
    [J]. INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2014, 39 (35) : 20388 - 20395
  • [48] Spectral Characteristics of Optical Discharge in a High-Speed Methane-Air Jet
    Zudov, V. N.
    [J]. TECHNICAL PHYSICS LETTERS, 2017, 43 (06) : 551 - 553
  • [49] Study on effect of dimethyl ether addition on combustion characteristics of turbulent methane/air jet diffusion flame
    Kang, Yinhu
    Shuang, Wei
    Jiang, Xingchi
    Song, Yangfan
    Sun, Sicong
    Zhang, Pengyuan
    Sun, Yuming
    Lu, Xiaofeng
    Wang, Quanhai
    Gou, Xiaolong
    Ji, Xuanyu
    [J]. FUEL PROCESSING TECHNOLOGY, 2017, 159 : 421 - 435
  • [50] Control of the structure and sooting characteristics of a coflow laminar methane/air diffusion flame using a central air jet: An experimental and numerical study
    Liu, F.
    Smallwood, G. J.
    [J]. PROCEEDINGS OF THE COMBUSTION INSTITUTE, 2011, 33 : 1063 - 1070