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Study on effect of fuel switch process on transient emissions for LPG engine

机译:燃油转换过程对液化石油气发动机瞬态排放的影响研究

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Due to the difficult cold start for LPG engine, most of LPG passenger cars adopt gasoline auxiliary start and automatically switch to LPG after engine warm-up. Therefore, the optimized fuel switch conditions are critical to the development of LPG passenger car meeting with National Emission IV legislation. This paper presents the effects of coolant temperature, engine speed and torque on the switch process by means of lots of experiments. The results show that they bring the transient fluctuation of excess air coefficient during switch process. Thus the fluctuation amplitude and duration have direct impact on engine tailpipe emission. If the excess air coefficient fluctuation amplitudes go beyond the high conversion efficiency window of three-way catalyst, the engine's transient emission deteriorates. Above all, the proper control of the excess air coefficient fluctuation amplitude is significant to lower engine emission during fuel switch process.
机译:由于液化石油气发动机的冷启动困难,大多数液化石油气乘用车采用汽油辅助启动,并在发动机预热后自动切换到液化石油气。因此,优化的燃料转换条件对于开发符合国四排放法规的液化石油气乘用车至关重要。本文通过大量实验介绍了冷却液温度,发动机转速和扭矩对转换过程的影响。结果表明,它们在开关过程中带来过剩空气系数的瞬时波动。因此,波动幅度和持续时间直接影响发动机排气管的排放。如果过量的空气系数波动幅度超出三元催化器的高转换效率窗口,则发动机的瞬态排放会恶化。最重要的是,对过量空气系数波动幅度的正确控制对于降低燃油转换过程中的发动机排放至关重要。

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