点火角对氢内燃机冷起动燃烧与排放特性的影响

    Combustion and Emissions Performance of a Hydrogen Engine During Cold Start at Different Spark Timings

    • 摘要: 为了解决氢内燃机浓燃起动时由于润滑油进入燃烧室而造成的HC、CO排放较高问题,进一步优化氢内燃机冷起动性能,在一台经改装的1.6 L四缸进气道燃料喷射氢内燃机上,试验研究了浓燃条件下点火角对氢内燃机冷起动燃烧与排放特性的影响.试验中,将氢内燃机冷却水及机油温度控制在(24±0.5)℃,点火角由25° BTDC逐渐推迟至10° ATDC.试验结果表明:在过量空气系数为0.7条件下,随着点火角的逐渐推迟,氢内燃机冷起动转速与首循环缸内压力峰值均呈现先升高后降低的变化趋势,起动成功时间呈现先缩短后延长的变化趋势.其中当点火角为15° BTDC时,氢内燃机成功起动时间最短,首循环缸内压力峰值最大;随点火角的推迟,氢内燃机冷起动前50个循环火焰发展期平均值先缩短后有所延长,而快速燃烧持续期逐渐延长;由于蒸发的润滑油进入气缸内而导致排放中出现一部分HC和CO污染物.当点火角由25° BTDC推迟至10° ATDC时,氢内燃机冷起动前6 s内NOx、HC及CO排放平均值分别降低约84.9%、33.6%和23.8%.由此可见,推迟点火角有利于降低纯氢内燃机冷起动过程中NOx、HC及CO排放.

       

      Abstract: Optimizing and controlling ignition timing is one of the important technologies to improve the cold start performance of hydrogen internal combustion engine. The combustion and performance of a hydrogen engine during cold start were investigated at different spark timing conditions. An electronically controlled hydrogen port-injection system was added to a four-cylinder commercial gasoline SI engine, and a new electronic control unit (NECU) was developed to realize the control of the spark timing. During the experiment, the lubricant and coolant temperatures were roughly kept at (24±0.5)℃, and the spark timing was varied from 25° BTDC to 10° ATDC. Results show that when the excess air ratio is 0.7, the peak cylinder pressure of the first cycle and the successful start duration for hydrogen engine first increase and then decrease with the retarding of spark timing. At the spark timing of 15° BTDC, the hydrogen engine gains the fastest successful start and the highest first cycle cylinder pressure. Flame development period is first shortened and then prolonged and flame propagation period is prolonged gradually with the retard of spark timing. The average emissions of NOx, HC and CO are reduced by 84.9%, 33.6% and 23.8%, respectively, in the first 6 seconds during the cold start process.

       

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