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Cold and Warm Start Characteristics using HVO and RME Blends in a V6 Diesel Engine

机译:使用HVO和RME混合在V6柴油发动机中的冷热启动特性

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The first several cycles determine the quality of an engine start. Low temperatures and air/fuel ratio cause incomplete combustion of the fuel. This can lead to dramatic increases in HC and PM emissions. In order to meet Euro V legislation requirements which have stricter cold start emission levels, it is critical to study the characteristics of cold and warm starting of engines in order to develop an optimized operation. The NO and THC emissions were measured by fast CLD and Fast FID gas analyzers respectively and PM in both nucleation and accumulation modes were measured by DMS500. The coolant temperature was controlled in order to guarantee the experiment repeatability. The results show that at cold start using RME60 produced higher NO and lower THC than the other tested fuels while combustion of HVO60 produced a similar level of NO but lower THC compared with mineral diesel. Meanwhile, the nucleation mode of mineral diesel was similar to RME60 but higher than HVO60. The accumulation particle of using mineral diesel was higher than RME60 but lower than that of HVO60. As the engine coolant temperature increased to 90 °C, the NO emission of each fuel was increased by varying amounts. THC and PM of all fuels were decreased except for HVO60 which increased THC and nucleation mode PM dramatically.
机译:第一个几个循环确定发动机的质量。低温和空气/燃料比导致燃料的不完全燃烧。这可能导致HC和PM排放的剧烈增加。为了满足具有更严格的冷启动排放水平的欧v立法要求,研究了发动机的冷热启动的特点至关重要,以便开发优化的操作。 NO和THC排放通过快速CLD和快速FID气体分析仪测量,并且通过DMS500测量核切割和累积模式的PM。控制冷却剂温度以确保实验重复性。结果表明,在使用RME60的冷启动时,比其他测试燃料产生较高的NO和更低的THC,而HVO60的燃烧产生与矿物柴油相比类似的NO但低温水平。同时,矿物柴油的成核模式类似于RME60,但高于HVO60。使用矿物柴油的累积粒子高于RME60,但低于HVO60的RME60。随着发动机冷却剂温度升至90℃,通过不同的量增加每个燃料的排放量。除HVO60外,所有燃料的THC和PM都会降低,从而显着增加了THC和成核模式。

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