首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Investigation into hydrocarbon emissions from crevice and oil film during cold start and idling periods in a spark ignition engine
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Investigation into hydrocarbon emissions from crevice and oil film during cold start and idling periods in a spark ignition engine

机译:火花点火发动机冷启动和空转期间缝隙和油膜中碳氢化合物排放的调查

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摘要

In order to understand better the process of hydrocarbon formation and the effect of the top-land crevice and the oil layer of the cylinder liner on unburned hydrocarbons during cold start and idling periods, the temperature of the piston top-land and liner was measured. Based on the measured results, the amount of unburned hydrocarbons from the crevice and liner has been predicted. It was found that the temperature of the piston top-land and cylinder liner took about 150-200 s to reach itsequilibrium state as the engine started up. The concentration of hydrocarbons from the top-land crevice and from the oil layer will be reduced to 40 and 75 per cent of its initial value respectively. It is considered that a reduction in piston thermalcapacity can reduce the total unburned hydrocarbons during this transient period owing to quick minimization of the top-land crevice volume and rapid increase in mixture temperature in the crevice region.
机译:为了更好地理解碳氢化合物的形成过程,以及在冷启动和空转期间,顶面缝隙和气缸套的油层对未燃烧的碳氢化合物的影响,测量了活塞顶面和衬套的温度。根据测量结果,可以预测出裂缝和衬板中未燃烧的碳氢化合物的量。研究发现,随着发动机的启动,活塞顶面和气缸套的温度达到平衡状态大约需要150-200 s。来自顶隙和油层的碳氢化合物的浓度将分别降至其初始值的40%和75%。人们认为,由于顶极缝隙体积的快速最小化和缝隙区域内混合物温度的快速升高,活塞热容量的减少可以在此过渡期间减少总未燃烧的碳氢化合物。

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