首页> 外文期刊>International Journal of Automotive Technology >COMPARISON OF HYDROCARBON REDUCTION IN A SI ENGINE BETWEEN CONTINUOUS AND SYNCHRONIZED SECONDARY AIR INJECTIONS
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COMPARISON OF HYDROCARBON REDUCTION IN A SI ENGINE BETWEEN CONTINUOUS AND SYNCHRONIZED SECONDARY AIR INJECTIONS

机译:连续二次进气和同步二次进气中SI发动机中碳还原的比较

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摘要

Effect of secondary air injection (SAI) on hydrocarbon reduction has been investigated in a single cylinder SI engine operating at cold-steady/cold-start conditions. The hydrocarbon emission and exhaust gas temperature with and without catalytic converter were compared with continuous and synchronized SAIs, which injected secondary air intermittently into exhaust port. Effects of SAI location, SAI pressure, SAI timing, and location of catalytic converter have been investigated and the results are compared for both SAIs with base condition. At cold-steady condition, the rate of HC reduction increased as the location of SAI was closer to the exhaust valve for both synchronized and continuous SAIs. The emission of HC decreased with increasing exhaust-A/F when it was rich, and was relatively insensitive when it was lean. The timing of SAI in synchronized SAI had significant effect on HC reduction and exhaust gas temperature and the synchronized SAI was found to be more effective in HC reduction and exhaust gas temperature compared to the continuous SAI. At cold-start condition, when the catalytic converter was located 20 cm downstream from the exhaust port exit, the catalytic converter warm-up period for both SAIs decreased by about 50%, and the accumulated hydrocarbon emission during the first 120 s decreased about by 56% and 22% with the synchronized and continuous SAIs, respectively, compared to that of the base condition.
机译:在冷稳定/冷启动条件下运行的单缸SI发动机中,已经研究了二次空气喷射(SAI)对碳氢化合物还原的影响。将具有和不具有催化转化器的碳氢化合物排放和废气温度与连续和同步的SAI(分别将二次空气间歇地注入排气口)进行比较。研究了SAI位置,SAI压力,SAI定时和催化转化器位置的影响,并比较了两个具有基本条件的SAI的结果。在冷稳定条件下,同步和连续SAI的SAI位置都更靠近排气门,因此HC降低的速率增加。富油时,HC的排放随着废气A / F的增加而减少,而贫油时,HC的排放相对不敏感。同步SAI中SAI的时间安排对HC降低和废气温度有显着影响,并且与连续SAI相比,同步SAI在HC降低和废气温度方面更有效。在冷启动条件下,当催化转化器位于排气口出口的下游20 cm处时,两个SAI的催化转化器预热时间均减少了约50%,而在最初的120 s内累积的碳氢化合物排放量减少了约50%。与基本情况相比,同步和连续SAI分别为56%和22%。

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