Pavel Nicolaie, Chiriac Radu, Birtas Adrian, Draghici Florin, Dinca Mihai
Opt Express. 2019 Apr 15;27(8):A385-A396. doi: 10.1364/OE.27.00A385.
Laser ignition was used to operate a four-stroke, four-cylinder, multipoint fuel injection gasoline passenger car engine, replacing the engine classical ignition device. The laser ignition system was compactly built with diode end-pumped Nd:YAG/Cr:YAG composite ceramics, each laser spark plug delivering pulses at 1.06 μm with 4 mJ energy and 0.8 ns duration at variable repetition rate, in accordance with the engine speed. The engine was operated at constant speed-constant load condition of 2000 rpm-2 bar equivalent brake mean effective pressure, and different ignition timings, thus simulating city traffic situations. Two relative air-fuel ratios have been considered: λ1 for the stoichiometric mixture operation and λ1.25 for the lean mixture condition. Parameters indicating engine performance, efficiency, combustion stability, and emissions have been measured and registered when groups of 500 consecutive cycles were acquired. The engine brake power, brake specific fuel consumption, coefficient of variability for indicated mean effective pressure, initial and main combustion stage durations, as well as exhaust emissions like carbon monoxide (CO) and total unburned hydrocarbons (THC) emphasized that significant improvements can be obtained for lean air-fuel mixture operation. Increases of the nitrogen oxides emission (NO) were measured when laser ignition was used.
采用激光点火来运行一台四冲程、四缸、多点燃油喷射的汽油乘用车发动机,以取代发动机的传统点火装置。激光点火系统由二极管端面泵浦的Nd:YAG/Cr:YAG复合陶瓷紧凑构建而成,每个激光火花塞根据发动机转速以可变重复率输出波长为1.06μm、能量为4mJ、脉宽为0.8ns的脉冲。发动机在2000转/分钟 - 2巴当量制动平均有效压力的恒速 - 恒负荷工况下运行,并采用不同的点火正时,以此模拟城市交通状况。考虑了两种相对空燃比:化学计量比混合气运行时λ≈1,稀混合气工况时λ≈1.25。在采集500个连续循环的分组数据时,对指示发动机性能、效率、燃烧稳定性和排放的参数进行了测量和记录。发动机制动功率、制动比油耗、指示平均有效压力的变异系数、初始燃烧阶段和主燃烧阶段持续时间,以及一氧化碳(CO)和总未燃碳氢化合物(THC)等尾气排放表明,稀空燃比混合气运行可实现显著改进。采用激光点火时,氮氧化物排放(NO)有所增加。