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首页> 外文期刊>International Journal of Automotive Technology >TRANSIENT CHARACTERISTICS OF EMISSIONS DURING ENGINE START/STOP OPERATION EMPLOYING A CONVENTIONAL GASOLINE ENGINE FOR HEV APPLICATION
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TRANSIENT CHARACTERISTICS OF EMISSIONS DURING ENGINE START/STOP OPERATION EMPLOYING A CONVENTIONAL GASOLINE ENGINE FOR HEV APPLICATION

机译:使用常规汽油发动机进行HEV应用的发动机启动/停止操作过程中的瞬态排放特征

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摘要

In this paper, we investigate the transient characteristics of combustion and emissions during engine start/stop operations in hybrid electric vehicle (HEV) applications. Hydrocarbon (HC) emissions during the initial 2nd~9th cycles are found to be significantly greater when the engine is quickly started under the original engine calibration mode. Lower intake manifold absolute pressure (MAP) was also found to cause larger residual gas dilution and poor combustion, resulting in a higher HC concentration when the cranking speed was increased. The post-catalyst HC concentration was found in the way of initially decrease and then to increase again as the cranking speed was increased. A lowest concentration value was achieved at a cranking speed of 1000 r/min. Engine shut-down by fuel cut-off was shown to produce lower emissions than shut-down by ignition cut-off as one can avoid misfire of the last fuel injection cycle. The fuel deposited during the stop process seems to impact engine restart enrichment mostly during the initial 0.7 s for this engine, whose performance is dominated by the MAP transition characteristic and the time coefficient for fuel vaporization in this time period
机译:在本文中,我们研究了混合动力汽车(HEV)应用中发动机启动/停止操作期间燃烧和排放的瞬态特性。当在原始发动机校准模式下快速启动发动机时,发现在第2至第9个循环中的碳氢化合物(HC)排放量显着增加。还发现较低的进气歧管绝对压力(MAP)会导致较大的残留气体稀释和不良的燃烧,当提高起动速度时会导致较高的HC浓度。发现催化剂后HC的浓度先是降低,然后随着起动速度的增加而再次增加。在1000 r / min的起动速度下达到最低浓度值。由于可以避免最后一次燃料喷射循环的失火,因此通过燃油切断而关闭发动机所产生的排放要比通过点火切断而产生的排放更低。停止过程中沉积的燃料似乎主要在该发动机的最初0.7 s内影响发动机的重启富集,其性能主要受MAP过渡特性和该时间段内燃料汽化的时间系数的影响。

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