Numerical comparison of HCCI combustion mode between a free piston linear engine and traditional crankshaft engine

被引:2
|
作者
Zeng, Shan [1 ]
Jing, Yuan [1 ]
Yuan, Chenheng [1 ,2 ]
机构
[1] Chongqing Jiaotong Univ, Coll Traff & Transportat, Chongqing 400074, Peoples R China
[2] Chongqing Jiaotong Univ, Chongqing Key Lab Human Vehicle Rd Cooperat & Saf, Chongqing 400074, Peoples R China
基金
中国国家自然科学基金;
关键词
Free piston linear engine; HCCI; Heat release; Combustion; CHARGE COMPRESSION IGNITION; PERFORMANCE; LIMITS;
D O I
10.1007/s10973-020-10086-2
中图分类号
O414.1 [热力学];
学科分类号
摘要
The free piston linear engine (FPLE) eliminates the crankshaft components and supports variable compression ratio operation. This characteristic makes it as one of the most appropriate choices to adopt HCCI combustion mode. This work aims to reveal the preliminary characteristics of HCCI combustion in FPLE and compare it with traditional crankshaft engines (TCE). The HCCI combustion model of TCE and FPLE was established by using a chemical kinetic reaction mechanism, and it then was numerically calculated to obtain the combustion and emission performance. The results indicate that the typical two-stage reaction characteristic of HCCI combustion also occur in the FPLE. Although the final cumulative heat release of the two types of engines is approximately the same, the low-temperature reaction stage of FPLE comes later, which also leads to the lag of its high-temperature reaction stage. In addition, the TCE features with earlier heat release rate, higher peak pressure and temperature, and longer duration of high temperature, which are beneficial to promote the reaction of soot, thereby slightly reducing soot emissions, but also increasing NO emissions.
引用
收藏
页码:1359 / 1369
页数:11
相关论文
共 50 条
  • [21] SI and HCCI Combustion Mode Transition Control of an HCCI Capable SI Engine
    Yang, Xiaojian
    Zhu, Guoming
    IEEE TRANSACTIONS ON CONTROL SYSTEMS TECHNOLOGY, 2013, 21 (05) : 1558 - 1569
  • [22] Simulation Analysis of the Effects of EGR Rate on HCCI Combustion of Free-piston Diesel Engine Generator
    Liu, Chunhui
    Yi, Kechuan
    JORDAN JOURNAL OF MECHANICAL AND INDUSTRIAL ENGINEERING, 2021, 15 (01): : 23 - 27
  • [23] Numerical simulation of catalysis combustion inside micro free-piston engine
    Wang, Qian
    Zhang, Di
    Bai, Jin
    He, Zhixia
    ENERGY CONVERSION AND MANAGEMENT, 2016, 113 : 243 - 251
  • [24] Dynamic Modeling of SI/HCCI Free-Piston Engine Generators
    Chiang, Chia-Jui
    Yang, Jing-Long
    Lan, Shao-Ya
    Shei, Tsung-Wei
    Chiang, Wen-Shu
    Chen, Bo-Liang
    2011 6TH IEEE CONFERENCE ON INDUSTRIAL ELECTRONICS AND APPLICATIONS (ICIEA), 2011, : 1615 - 1620
  • [25] Experimental comparison of two linear machines developed for the free piston engine
    Baker, Nick J.
    Jalal, Asian Sa
    Wang, Junwan
    Korbekandi, Ramin M.
    JOURNAL OF ENGINEERING-JOE, 2019, (17): : 4406 - 4410
  • [26] Influence of Piston Initial State on HCCI Combustion in Micro Free-piston Engine Using Experiment Images and CFD Analysis
    Bai, Jin
    Wang, Qian
    He, Zhixia
    Zhang, Penggang
    APPLIED ENERGY TECHNOLOGY, PTS 1 AND 2, 2013, 724-725 : 1350 - 1354
  • [27] A Review on Free Piston Linear Engine (FPLE)
    Tamili, S. Norazilah A.
    Aziz, A. Rashid A.
    Sulaiman, Shaharin A.
    Zainal, Ezrann Z.
    Firmansyah
    Heikal, M. R.
    6TH INTERNATIONAL CONFERENCE ON PRODUCTION, ENERGY AND RELIABILITY 2018: WORLD ENGINEERING SCIENCE & TECHNOLOGY CONGRESS (ESTCON), 2018, 2035
  • [28] Motion characteristic of a free piston linear engine
    Xiao, Jin
    Li, Qingfeng
    Huang, Zhen
    APPLIED ENERGY, 2010, 87 (04) : 1288 - 1294
  • [29] Method of Ion Current Detection for HCCI Combustion on SI/HCCI Dual Mode Engine
    Dong, Guangyu
    Wu, Zhijun
    Li, Liguang
    Liu, Fafa
    Guo, Yingnan
    2009 IEEE INTELLIGENT VEHICLES SYMPOSIUM, VOLS 1 AND 2, 2009, : 1221 - 1226
  • [30] Effect of Piston Motion on Combustion of CNG Free Piston Engine (FPE)
    Yin, Ningxia
    Xu, Zhaoping
    Chang, Siqin
    Lin, Jiming
    ENGINEERING SOLUTIONS FOR MANUFACTURING PROCESSES IV, PTS 1 AND 2, 2014, 889-890 : 501 - 506