Combustion cycle-to-cycle variations of opposed-piston two-stroke gasoline direct injection engine

被引:0
|
作者
Ma, Fukang [1 ]
Yang, Wei [1 ]
Xu, Ruifan [1 ]
Liu, Xiaoyu [1 ]
机构
[1] North Univ China, Sch Energy & Power Engn, Shanxi Taiyuan Xueyuan Rd 3, Taiyuan 030051, Peoples R China
关键词
Opposed-piston two-stroke gasoline engine; combustion; cycle to cycle variation; indicated mean effective pressure; maximum cylinder pressure; maximum rate of pressure rise;
D O I
10.1177/14680874231205089
中图分类号
O414.1 [热力学];
学科分类号
摘要
The combustion characteristics and cycle-to-cycle variations of opposed-piston two-stroke (OP2S) gasoline direct injection (GDI) engine are investigated with experiment. The effects of engine speed on the combustion process and cycle-to-cycle variations are discussed. This paper chooses the indicated mean effective pressure, the maximum cylinder pressure and the maximum pressure rising rate to characterize the combustion cycle-to-cycle variations. The heat release rate of OP2S-GDI engine is in accordance with the conventional gasoline engine, which is divided into flame developing period, rapid burning period and after burning period. With the increase of engine speed, the maximum combustion pressure and maximum pressure rise rate decrease, and the time corresponding to the maximum in-cylinder pressure is delayed. The pressure rise rate associated with different engine speeds all show an increasing trend, with maximum values less than 0.2 MPa/degrees CA. The peak value of instantaneous heat release rate in the combustion process decreases and the combustion amount in the post-combustion period increases as the engine speed increases. The cycle-to-cycle variation rate of indicated mean effective pressure (IMEP) increases as the engine speed increases. The maximum IMEP cycle-to-cycle variation rate is 6.101% at 4000 rpm, which is less than the traditional gasoline engine cycle-to-cycle variation rate (10%). The cycle-to-cycle variation rate of the maximum cylinder pressure (pmax) increases as the engine speed increases. The pmax cycle-to-cycle variation rate is 1.083% at 4000 rpm, which is less than traditional gasoline engine cycle-to-cycle variation rate (2%). The R (pmax, pi) is weakly correlated at 2000 rpm and uncorrelated at 3000 rpm and 4000 rpm. The R(theta(pmax), pi) is strongly correlated at 3000 rpm and uncorrelated at 2000 rpm and 4000 rpm. The cycle-to-cycle variation rate of the maximum pressure rise rate (dp/d phi) is 7.406%%, 7.919% and 7.667% respectively at 2000 rpm, 3000 rpm and 4000 rpm. The R ((dp/d phi) max, pi) is weakly correlated at different engine speed, the R(theta(dp/d phi) max, pi) is moderately correlated at 2000 rpm and positive correlation at 3000 rpm and 4000 rpm.
引用
收藏
页码:717 / 726
页数:10
相关论文
共 50 条
  • [21] Optimization of combustion chamber geometry for a two-stroke spark-ignited direct-injection opposed-piston rod-less aviation kerosene engine
    Zhu, Zhaojun
    Li, Yikai
    Yang, Ziming
    Xie, Yong
    Sun, Chenghan
    Xia, Yingqiu
    Fuel, 2025, 381
  • [22] Numerical investigation of CAI Combustion in the Opposed-Piston Engine with Direct and Indirect Water Injection
    Pyszczek, R.
    Mazuro, P.
    Teodorczyk, A.
    SCIENTIFIC CONFERENCE ON AUTOMOTIVE VEHICLES AND COMBUSTION ENGINES (KONMOT 2016), 2016, 148
  • [23] High load performance and combustion analysis of a four-valve direct injection gasoline engine running in the two-stroke cycle
    Dalla Nora, Macklini
    Zhao, Hua
    APPLIED ENERGY, 2015, 159 : 117 - 131
  • [24] Influence of scavenging port parameters on scavenging process in opposed-piston two-stroke diesel engine
    Zhang, Zhen-Yu
    Zhao, Zhen-Feng
    ,zhang, Fu-Jun
    Zhao, Chang-Lu
    Wang, Bin
    Neiranji Gongcheng/Chinese Internal Combustion Engine Engineering, 2014, 35 (05): : 119 - 124
  • [25] Study on the synthetic scavenging model validation method of opposed-piston two-stroke diesel engine
    Liu, Yuhang
    Zhang, Fujun
    Zhao, Zhenfeng
    Dong, Yafei
    Ma, Fukang
    Zhang, Shuanlu
    APPLIED THERMAL ENGINEERING, 2016, 104 : 184 - 192
  • [26] Effect of Layered-Port VVT on Performance of Opposed-Piston Two-Stroke Diesel Engine
    Yang, Wei
    Li, Xiang-Rong
    Zhao, Wei-Hua
    Kang, Yu-Ning
    Liu, Fu-Shui
    JOURNAL OF ENERGY ENGINEERING, 2019, 145 (06)
  • [27] The combustion chamber deposit formation on a piston crown of a small two-stroke cycle engine
    Abliz, I. (t5203001@iwate-u.ac.jp), 2005, Japan Society of Mechanical Engineers (71):
  • [28] Experimental investigation of the cycle-to-cycle variations in combustion process of a hydraulic free-piston engine
    Zhao, Zhenfeng
    Wu, Dan
    Zhang, Zhenyu
    Zhang, Fujun
    Zhao, Changlu
    ENERGY, 2014, 78 : 257 - 265
  • [29] Optimization of port height of opposed-piston two-stroke diesel engine based on GA-SVM
    Lu X.
    Zhang F.
    Zhang Z.
    Liu Y.
    Hangkong Dongli Xuebao/Journal of Aerospace Power, 2019, 34 (11): : 2387 - 2394
  • [30] The zero-dimensional model of the scavenging process in the opposed-piston two-stroke aircraft diesel engine
    Grabowski, L.
    Pietrykowski, K.
    Karpinski, P.
    PROPULSION AND POWER RESEARCH, 2019, 8 (04) : 300 - 309