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

IF 2.1 4区 工程技术 Q2 ENGINEERING, MECHANICAL
Fukang Ma, Wei Yang, Ruifan Xu, Xiaoyu Liu
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Abstract

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/°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 ( p max ) increases as the engine speed increases. The p max 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 ( p max , p i ) is weakly correlated at 2000 rpm and uncorrelated at 3000 rpm and 4000 rpm. The R( θ( p max ), p i ) 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 (d p/d φ) is 7.406%%, 7.919% and 7.667% respectively at 2000 rpm, 3000 rpm and 4000 rpm. The R ((d p/d φ) max , p i ) is weakly correlated at different engine speed, the R( θ(d p/d φ) max , p i ) is moderately correlated at 2000 rpm and positive correlation at 3000 rpm and 4000 rpm.
对置活塞二冲程汽油直喷发动机燃烧循环间的变化
通过实验研究了对置活塞二冲程(OP2S)汽油直喷(GDI)发动机的燃烧特性及其循环变化规律。讨论了发动机转速对燃烧过程和循环变化的影响。本文选取指示的平均有效压力、最大气缸压力和最大压力上升速率来表征燃烧循环间的变化。OP2S-GDI发动机的放热速率与常规汽油机一致,分为火焰发展期、快速燃烧期和燃烧后期。随着发动机转速的提高,最大燃烧压力和最大升压率降低,最大缸内压力对应的时间延迟。不同发动机转速下的压力上升速率均呈增大趋势,最大值均小于0.2 MPa/°CA。随着发动机转速的增加,燃烧过程中的瞬时放热率峰值减小,燃烧后阶段的燃烧量增大。指示平均有效压力(IMEP)的循环变化率随着发动机转速的增加而增加。4000 rpm时,最大IMEP循环变化率为6.101%,低于传统汽油机的循环变化率(10%)。最大气缸压力(pmax)的循环变化率随着发动机转速的增加而增加。4000rpm时,最大循环变化率为1.083%,低于传统汽油机的2%。R (pmax, pi)在2000 rpm时弱相关,在3000 rpm和4000 rpm时不相关。R(θ(p max), pi)在3000 rpm时强相关,在2000 rpm和4000 rpm时不相关。在2000rpm、3000rpm和4000rpm时,最大压力上升速率(d p/d φ)的循环变化率分别为7.406%、7.919%和7.667%。在不同转速下,R((d p/d φ) max, pi)呈弱相关,R(θ(d p/d φ) max, pi)在2000转时呈中等相关,在3000转和4000转时呈正相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Engine Research
International Journal of Engine Research 工程技术-工程:机械
CiteScore
6.50
自引率
16.00%
发文量
130
审稿时长
>12 weeks
期刊介绍: The International Journal of Engine Research publishes high quality papers on experimental and analytical studies of engine technology.
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