Numerical analysis of knock combustion with methanol-isooctane blends in downsized SI engine

被引:26
|
作者
Feng, Hongqing [1 ]
Wei, Jianan [1 ]
Zhang, Jing [1 ]
机构
[1] China Univ Petr, Dept Energy & Power Engn, Qingdao 266580, Peoples R China
关键词
Methanol; Knock combustion; Pressure oscillation; Radical; DETAILED CHEMICAL-KINETICS; SPARK-IGNITION ENGINE; MULTIDIMENSIONAL SIMULATION; TEMPERATURE; EXPLOSION; PRESSURE; BUTANOL; FUELS; LES;
D O I
10.1016/j.fuel.2018.09.026
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
Methanol is a promising fuel to suppress knock for improving engine compression ratio. In this study, knock combustion was simulated in a downsized spark engine with different methanol-isooctane blends. The pressure and temperature evolution profiles of these mixtures during knocking were obtained and showed that knock here originated from the intensive interaction between pressure wave and the heat released from auto ignition, which leaded to some other hot-spots. While using 5% methanol, the intensity of chemical reactions was reduced sharply comparing with that of pure isooctane, which lowered the heat release rate and successfully reduced the intensity of knock. The reactions below temperature of 950 K gradually become slower with methanol content increasing to 10% and 15%. However, the accelerated reactions made fuel consumed faster once it exceeded this certain temperature limit, which leaded a slight increase in knock intensity. The outcome of this work is potentially useful for comprehending the knock process of methanol.
引用
收藏
页码:394 / 403
页数:10
相关论文
共 50 条
  • [21] Characteristics of SI engine fueled with BE50-Isooctane blends with different ignition timings
    Suyatno
    Riupassa, Helen
    Marianingsih, Susi
    Nanlohy, Hendry Y.
    [J]. HELIYON, 2023, 9 (01)
  • [22] Numerical study on the effects of spark strategies on knocking combustion in a downsized gasoline rotary engine
    Zou, Run
    Li, Yuan
    Liu, Jinxiang
    Wang, Nana
    Zeng, Qinghan
    Li, Jiong
    [J]. ENERGY, 2023, 263
  • [23] Numerical Analysis of a Downsized 2-Stroke Uniflow Engine
    Ma, Jun
    Zhao, Hua
    Freeland, Paul
    Hawley, Martyn
    Xia, Jun
    [J]. SAE INTERNATIONAL JOURNAL OF ENGINES, 2014, 7 (04) : 2035 - 2044
  • [24] Experimental study of knock combustion and direct injection on knock suppression in a high compression ratio methanol engine
    Duan, Qimeng
    Yin, Xiaojun
    Wang, Xiaochen
    Kou, Hailiang
    Zeng, Ke
    [J]. FUEL, 2022, 311
  • [25] Analysis of pressure waves in the cone-type combustion chamber under SI engine knock
    Yao, Anren
    Xu, Han
    Yao, Chunde
    [J]. ENERGY CONVERSION AND MANAGEMENT, 2015, 96 : 146 - 158
  • [26] Experimental and numerical study on a SI engine fueled with gasohol and dissociated methanol gas blends at lean conditions
    Li, Bo
    Zhong, Fei
    Wang, Ruixin
    Jiang, Yankun
    Chen, Yexin
    [J]. ENERGY, 2024, 292
  • [27] Analysis of acoustics in combustion chamber during knock combustion of an IC engine
    Wei, Jing-Si
    Shu, Ge-Qun
    Wei, Hai-Qiao
    [J]. Neiranji Xuebao/Transactions of CSICE (Chinese Society for Internal Combustion Engines), 2010, 28 (05): : 427 - 434
  • [28] CFD Simulation for the Knock Analysis in the Internal Combustion Engine
    Dodig, Dino
    Matulic, Nikola
    Santic, Toni
    Radica, Gojmir
    [J]. 2018 3RD INTERNATIONAL CONFERENCE ON SMART AND SUSTAINABLE TECHNOLOGIES (SPLITECH), 2018, : 399 - 404
  • [29] Emission and Combustion Analysis of a Glow-Plug Engine Fuelled with Nitromethane-Methanol Blends
    Raviteja, Sammeta
    Ramakrishna, P. A.
    Ramesh, A.
    [J]. SAE INTERNATIONAL JOURNAL OF FUELS AND LUBRICANTS, 2020, 13 (03) : 237 - 249
  • [30] Blends of Gasoline-Ethanol, Methanol used in Internal Combustion Engine
    Arapatsakos, Charalampos
    [J]. LATEST TRENDS ON URBAN PLANNING AND TRANSPORTATION, 2010, : 15 - 15